The Prometheus League
Breaking News and Updates
- Abolition Of Work
- Ai
- Alt-right
- Alternative Medicine
- Antifa
- Artificial General Intelligence
- Artificial Intelligence
- Artificial Super Intelligence
- Ascension
- Astronomy
- Atheism
- Atheist
- Atlas Shrugged
- Automation
- Ayn Rand
- Bahamas
- Bankruptcy
- Basic Income Guarantee
- Big Tech
- Bitcoin
- Black Lives Matter
- Blackjack
- Boca Chica Texas
- Brexit
- Caribbean
- Casino
- Casino Affiliate
- Cbd Oil
- Censorship
- Cf
- Chess Engines
- Childfree
- Cloning
- Cloud Computing
- Conscious Evolution
- Corona Virus
- Cosmic Heaven
- Covid-19
- Cryonics
- Cryptocurrency
- Cyberpunk
- Darwinism
- Democrat
- Designer Babies
- DNA
- Donald Trump
- Eczema
- Elon Musk
- Entheogens
- Ethical Egoism
- Eugenic Concepts
- Eugenics
- Euthanasia
- Evolution
- Extropian
- Extropianism
- Extropy
- Fake News
- Federalism
- Federalist
- Fifth Amendment
- Fifth Amendment
- Financial Independence
- First Amendment
- Fiscal Freedom
- Food Supplements
- Fourth Amendment
- Fourth Amendment
- Free Speech
- Freedom
- Freedom of Speech
- Futurism
- Futurist
- Gambling
- Gene Medicine
- Genetic Engineering
- Genome
- Germ Warfare
- Golden Rule
- Government Oppression
- Hedonism
- High Seas
- History
- Hubble Telescope
- Human Genetic Engineering
- Human Genetics
- Human Immortality
- Human Longevity
- Illuminati
- Immortality
- Immortality Medicine
- Intentional Communities
- Jacinda Ardern
- Jitsi
- Jordan Peterson
- Las Vegas
- Liberal
- Libertarian
- Libertarianism
- Liberty
- Life Extension
- Macau
- Marie Byrd Land
- Mars
- Mars Colonization
- Mars Colony
- Memetics
- Micronations
- Mind Uploading
- Minerva Reefs
- Modern Satanism
- Moon Colonization
- Nanotech
- National Vanguard
- NATO
- Neo-eugenics
- Neurohacking
- Neurotechnology
- New Utopia
- New Zealand
- Nihilism
- Nootropics
- NSA
- Oceania
- Offshore
- Olympics
- Online Casino
- Online Gambling
- Pantheism
- Personal Empowerment
- Poker
- Political Correctness
- Politically Incorrect
- Polygamy
- Populism
- Post Human
- Post Humanism
- Posthuman
- Posthumanism
- Private Islands
- Progress
- Proud Boys
- Psoriasis
- Psychedelics
- Putin
- Quantum Computing
- Quantum Physics
- Rationalism
- Republican
- Resource Based Economy
- Robotics
- Rockall
- Ron Paul
- Roulette
- Russia
- Sealand
- Seasteading
- Second Amendment
- Second Amendment
- Seychelles
- Singularitarianism
- Singularity
- Socio-economic Collapse
- Space Exploration
- Space Station
- Space Travel
- Spacex
- Sports Betting
- Sportsbook
- Superintelligence
- Survivalism
- Talmud
- Technology
- Teilhard De Charden
- Terraforming Mars
- The Singularity
- Tms
- Tor Browser
- Trance
- Transhuman
- Transhuman News
- Transhumanism
- Transhumanist
- Transtopian
- Transtopianism
- Ukraine
- Uncategorized
- Vaping
- Victimless Crimes
- Virtual Reality
- Wage Slavery
- War On Drugs
- Waveland
- Ww3
- Yahoo
- Zeitgeist Movement
-
Prometheism
-
Forbidden Fruit
-
The Evolutionary Perspective
Monthly Archives: August 2017
Webinar Replay: Investing In Robotics & AI – Seeking Alpha
Posted: August 10, 2017 at 6:13 am
The replay of our webinar, Investing in Robotics & Artificial Intelligence is now available. In this webinar, we are joined by Eugene Demaitre, Senior Web Editor of Robotics Business Review, to discuss current trends in the robotics and artificial intelligence industries and how investors can approach this space.
Transcript:
Jay Jacobs: Hello everyone and thank you for taking the time to join todays webinar on the topic of exploring robotics and artificial intelligence. My name is Jay Jacobs and Im the Director of Research at Global X Funds. We are an ETF provider based out of New York with over 57 funds, including 16 thematic funds including one focused on robotics and artificial intelligence, which is what were going to talk about today.
Were also really fortunate to be joined by an expert in the field, Eugene Demaitre, Senior Web Editor at Robotics Business Review, which is a leading publication in research news and information on the global robotics industry. Were very happy to have Eugene join us today.
In terms of todays agenda, Im going to spend a few minutes just going over some basics on robotics and artificial intelligence. Set up, what these disruptive technologies are, whats their potential, what types of sectors theyll impact. Then were going to switch to a little bit more of a radio-style Q&A with Eugene, to really pick his brain about current trends in robotics and artificial intelligence. Well do a hybrid, more traditional presentation with this radio-style interview.
At the end of our Q&A with Eugene, Im going to close it off with a few more slides on thematic investing in general, our perspective at Global X on how to best approach the thematic investing space. Were looking to leave about ten minutes or so at the end for questions. I believe theres a Q&A box; please do feel free to send in your questions along the way. If we dont get a chance to answer them during the body of the webinar, we will try to answer those towards the end.
I will pause for just one minute here to show some disclosures. I think we start off with a quick poll question here for the audience.
Moderator: Alright. This brings us to our first poll question. What aspect of robotics and artificial intelligence peaks your interest most? The options are: the high growth potential of the theme, concern about the future of employment, want to learn more about how the technology works, and other. Ill give you a moment to answer that.
Here are the poll results.
Jay: Well good to see most people are focused on the high growth potential of the theme. I think that aligns a lot with what were going to discuss today, but we certainly will touch on these other topics as well.
Specifically, lets just dive right into it. Lets start with the basics on robotics and artificial intelligence. We see these as two separate technologies, the first with robotics, really revolving around the idea, creation, design, and application of programmable mechanical devices that can perform tasks and interact with the environments without human input. Robotics has really been around for a few decades. Were obviously seeing a lot more interest in the space today. Eugene is going to touch a little bit on some of the reasons why thats happening.
Theres been some incredible advancements in things like advanced materials, batteries, additional sensors on robotics that are really starting to accelerate the adoption rate. I really think of robotics as the body, artificial intelligence is the mind. Thats the second technology. Its a division of computer science that emphasizes the conception of intelligent machines that can work, react, and learn like humans in order to recognize speech, plan, and solve problems.
When you combine these two technologies together is really when you start to see some very impressive technology that is starting to disrupt a variety of sectors. When you think in the past, robotics really has been around for a while. Weve seen it in places like automobile manufacturing. Its a really simple process, where the robot can pick up a piece sheet metal, punch it into a mold and bring it down the conveyor belt. When you include artificial intelligence with robotics, especially as those robots start to have more sensors, they start to be more dexterous.
What you see is no longer robots that are just taking a piece of metal and bringing it from Point A to Point B, but really robots that are beginning to interact with their environment. Theyre starting to sense things around them and in real time make decisions about where to go and what to do. This is really where we start to see the J curve, if you will, in terms of technology thats really starting to get wider and wider applications.
In terms of the macro trends, why is robotics such a popular theme today? Aside from the technology aspect, which Eugene will touch on, I think there are three important macro themes that are happening in the background here. The first is aging populations. This is really its own theme thats happening around the world. What were starting to see in some societies is really peak labor force. Meaning in places like Japan, were seeing that by 2060, its labor force will actually be about half the size of its peak.
Were seeing other places in the US and developed Europe and in China, where were seeing a leveling off of labor force size. Thats really starting to not only hit GDP growth going forward, but its actually going to start to make these economies very imbalanced. Youre going to see a lot more of the senior population, depending on a smaller group of workforce participants. Thats going to really challenge areas like healthcare or the services industry, where it really takes a lot of people to support the senior population.
What were seeing, especially in places like Japan, is robotics growing out of necessity. Were also seeing it grow out of opportunity. I think in one area, specifically with labor costs, if the 1990s were really characterized as the heyday for firms searching for outsourcing and looking for cheaper labor costs abroad, what were seeing is that now robotics is getting cheap enough where its actually surpassing offshore labor in terms of its costs. Weve seen some predictions that by offshoring you can save about 65% on labor costs, whereas robotics could save up to 90%. Were seeing a lot of interest from robotics as a way of saving on labor costs.
Third is performance improvement using machines because frankly they can do some things better than humans can, whether its in quality, speed, waste etc. This is not just in the manufacturing side; this is even transferring to places like medicine, where were seeing surgical robots that can do things even better than human surgeons. Were seeing three really broad trends outside of just the technological capability space that are starting to really propel the robotics and artificial intelligence themes going forward.
The question that we get probably most often is which sectors are going to be disrupted by robotics. Frankly, Eugene and I were talking before this call, and we were almost joking what sector isnt going to be disrupted by robotics and artificial intelligence. When most people think about the theme, the first thing they think about is manufacturing. Of course, robotics has been installed for the longest period of time but increasingly were seeing its involvement in military and defense with unmanned vehicles and drones. Were seeing it enter the medical space, with both healthcare providing robots, as well as surgical robots that are able to perform tasks, in some cases better than doctors. Were seeing artificial intelligence being used in diagnostics and trying to really try to figure out whats happening in the medical space.
On top of that, were seeing it in transportation. Weve heard a ton about autonomous cars over the last few years, as well as agriculture, where robotics are being used in place of tractors or to monitor things like crop yields across a very large acreage. Were seeing this as a very powerful theme that is not just limited to one sector, really something that can be disruptive across the entire economy.
With that introduction, I will call this the end of the intro and were going to turn it over to Eugene here and start to enter into the Q&A. First off Eugene, thanks for being on here. Were really excited to have you. Again, Eugene is coming from the Robotics Business Review, where he is looking at this stuff every day, publishing a lot reports and news and insights on the robotics space.
We have a few questions for you here; wed love to get your insights. Again, well follow up with a little bit about thematic investing towards the end and allow for a little bit of Q&A as well.
To kick it off, one of the questions were getting pretty frequently is why now? Why is robotics suddenly in the news all the time? Why are people asking questions? Why is it coming out in earnings calls, where companies are suddenly talking about how they have to respond to the rise of robotics and artificial intelligence? Whats happening now that wasnt happening five years ago, ten years ago, fifteen years ago?
Eugene Demaitre: Well, Jay, its actually a culmination of factors. Obviously industrial automation and manufacturing has been using robotics for decades, as you said. But more recently, improvements in sensors, thanks to things like cellphones and video games, and cheaper processors and the addition of AI capabilities combined with big data IoT abilities, all that has converged to make robots more flexible, smarter, more nimble and capable than they were before. Before, you had huge industrial arms on an assembly line behind a safety cage. Now, were starting to see robots that are more mobile and are more capable and can do multiple tasks.
Jay: Great. Thats very helpful. I do want to move to our second question. Weve been following this pretty closely, but in your opinion what do you think is the most cutting edge applications of robotics and AI? Weve seen so much in terms of what people are planning on coming out with, some moonshot ideas, as well as real applications of robotics and AI that are really impacting everyday lives, whether its peoples personal assistants on their phones or vacuum cleaners that are cleaning their houses. What are you seeing as the latest in the cutting edge technology in this space?
Eugene: We hear a lot about drone deliveries. While thats probably coming, I would say that drones are already being used to inspect bridges and to help out on construction sites in ways that previously people had not thought about. Also you mentioned agriculture earlier. There is a lot of use with drones for precision agriculture.
Another area, in addition to the ones you already mentioned is with artificial intelligence, were now using that not only for diagnosis but also for therapeutic uses. Were being able to interact with patients and I think thats definitely an area for likely growth in the near future. Then logistics/transportation, we talk about autonomous cars, but really its not just about passenger cars; its about delivery vehicles. Its about fleets of vehicles being controlled centrally, whether its in warehouses, on a campus somewhere or eventually out in the world. Those are areas where I think theres a lot of interest and a lot of development right now.
Jay: In your opinion, do you think the regulatory environment is going to have a big impact on the growth of this technology. In some instances, some people are saying this is a technology that just has so much momentum behind it theres nothing that can really stop it. But on the other hand, many people worry about the impact of regulation and how it could, potentially, derail a technology as it grows. Where do you think that stands in terms of the robotics and AI space? Is there something people who are considering investing in this space should be worried about as a risk or is it just something thats impossible to be tamed at this point?
Eugene: Its impossible to be tamed in that its happening in so many areas and so many ways. I dont think youll see one set of regulations governing all kinds of robots. On the other hand, there is definitely differences in how regulations that affect, say aerial drones, is being developed in Europe versus the US, or self-driving cars in US versus Asia. In addition to the investment climate, which Im sure you know much more about, the regulatory environment does matter. It matters in terms of trade. It matters in terms of supply chain. It matters in terms of the labor pool that may be affected or that has to work alongside these robots. For the moment, I dont think regulations are a threat but they definitely bear watching.
Jay: One of the things that weve been looking at is just how much of robotics is happening outside of the US. I think this is somewhat related to the regulatory question because, regulations could pop up in the US but that doesnt mean theyre going to exist in Japan or in Europe, which means there really is an opportunity, through regulation or the lack of regulation, for the US to emerge as a leader in the robotics space or to completely fall behind the rest of the world. Where do you see the US right now compared to places like Japan, in the development of robotics technology, in the application of robotics in its manufacturing and other sectors? How does it stack up?
Eugene: I think the US is still the leader in terms of investment and innovation. We have many excellent universities. We have a climate that encourages a certain degree of risk, which you need for creativity. At the same time, we should not rest on our laurels. We definitely have to watch China, which is a huge end-user market. We have to watch Japan, which culturally is more friendly; there are certain types of robots like as servants and social robots.
Even Europe has made a really concerted effort to develop AI and abilities around that. If any one country can be a leader across the board, I would say it is the US. At the same time, we face differential competition, depending on what technology, and what part of the world, and what news case youre talking about.
Jay: Now, weve seen robotics make a lot of headway in commercial capacities. Obviously the manufacturing applications that weve discussed but weve also seen them make headways in places like agriculture and healthcare. Is it already in the consumer space and were, kind of, missing it because its going on behind the scenes? Is it going to start to take off more, so its going to be more in our face? Why does it seem like robotics technology is taking off and yet I dont have a personal robot assistant yet?
Eugene: Thats a question I get asked all the time. I will say that in the past few years a lot of companies that started out on the consumer side, whether it was for drones or for social robots, actually pivoted over to the commercial space. So you see more efforts right now for robots in hospitality or in big box stores behind the scenes. I do think eventually that is going to change back toward the consumer, as, again, the robots continue to become more sophisticated and more capable.
Youll probably see it at first in areas like retail, where you may to go an airport or a shopping mall or a hospital and a robot will help you find your way. It may also help you do inventory at the same time. Eventually, those capabilities will become cheap enough and common enough that Rosy the Robot that you hear about so much will start to come into the home. I think at first, its going to be robots that come into the home will be for people with special needs, whether its the elderly or the handicapped. Itll be therapeutic but its not a matter of if; its more a matter of when.
Jay: You actually mentioned in one of your other answers, when we were talking about Japan, that there are some cultural differences where the Japanese are just more comfortable with robots as a society. Maybe thats one of the things thats holding back the consumer adoption in the US. Is that a big hurdle for consumer adoption here? Are people just uncomfortable sitting in a doctors office explaining to a robot whats wrong with them or is that something that you think is really going to become more every day and people are going to get more comfortable with over time?
Eugene: I think right now there is still a lot of discomfort in the US and in parts of Europe. Weve seen all the articles saying robots are going to steal jobs or heres the robot thats going to cause the apocalypse or whatever. A lot of that hype will subside once people start seeing robots in their daily lives. In fact, the consumer robots that we have seen, as soon as people are exposed to them they usually start giving them names. They in fact may even give them clothing and really treat them, maybe not quite as humans but really treat them with an enthusiasm that you might not expect.
I think at first, yes, there is resistance in the consumer market, particularly in North America and in other parts of the world. But I also think that, as with cellphones, well catch up pretty quickly, once they start becoming more common.
Jay: This reference is a little bit the slide that we have up here and another slide that Ill show but what inning are we in for robotics? I think its a little bit unusual the theme in that in some instances its been around for so long but in other instances its such a newly growing theme because of some of the new technology thats taking this to the next level. Are we in the early innings of robotics right now? Are we in the later innings and this is the last push? Where do we stand and how do places like China and its adoption of industrial robotics affect that change?
Eugene: Now, I would say robotics is maybe top of the fourth. Its farther along than people may realize. Its still not, again, ubiquitous and easy quite yet, but its getting there much quicker than people may realize. Id say, again, because industrial automation has been around for so long and theres a big push in logistics right now for automation, so Id say maybe were at the top of the fourth. Artificial intelligence, on the other hand, its still relatively early days. Id say were maybe at the bottom of the second (inning). Weve had a couple waves now with development of AI technology and were trying to figure out okay, we can play chess, or we can play Go, but now, how do we connect that to our existing How do we derive useful insights that we can act upon right away and AI is beginning to really move into that area.
Jay: Yeah, I did want to share this one slide because I thought it was really interesting because so many people think about robotics as really sort of this industrial technology, but this shows kind of expected future growth rates over the next eight years or so in terms of different segments. Of course, were seeing growth in the industrial segment but also other commercial uses, military use and then of course one of the fastest growing segments is that personal kind of consumer side of robotics. I was just wondering if you have any commentary on this slide and why you think kind of the non-industrial components are actually growing even faster than the industrial components?
Eugene: Well, again the industrial has been around for a while, although it is still expanding considerably. I have been in factories where they have one part in the assembly line that is automated and then the packaging or some other step remains to be automated, so there is still a lot of growth potential in industrial. Commercial, we talked before about the use of drones. Thats likely to continue growing. Military, weve written robotics business review extensively on how different militaries are pursuing different types of automation in the hopes of saving lives and defending their troops.
In personal, youre right; it is growing and partially because its starting from the smallest number of the different proportions and also because, again, once people become comfortable it, with aging population, with shortages of skilled labor, theres going to be a need for both home care robots but also assistive robots and right now the one household name is a robotic vacuum cleaner. There are lots of other things that robots can do around the house and around yard that once people figure out the best way to automate it, they will. There will be a lot of attention there, I think, in the near future.
Jay: You mentioned something there that kind of piqued my interest which is the fact that you visited some factories and you see parts of it is automated and parts of it isnt. Is that a result of a lack of capital or just simple lack of skill of the robots, that theres certain things that humans can do that they cant? Whats the biggest hurdle for a lot of these factories to just go completely lights-out and be fully automated?
Eugene: For the largest companies and the companies that are the most heavily automated like those in the automotive industry, for them, its more a matter of the edge cases but for small and mid-size enterprises, which we expect is an area of rapid growth of automation, theres the idea of oh, we automated the stuff years ago that we needed to do, but were going to have to re-engineer our processes. Were really going to have to take a look from end to end; how do we tie in the robots in production with our AI systems that go back to the customer with our supply chain management. And so, there is a little bit of a reluctance but again, the companies that do that will be much more competitive. Once people begin to realize that, I think it will pick up. There is an install phase that people are going to say oh, I have all these interesting robots, but I think competitive pressure and the rise of more and more capable collaborative robots is going to change that.
Jay: Got it. I want to kind of discuss the actual technology a little bit itself more. I kind of eluded to the fact that theres the two sides to the equation, right? Theres the artificial intelligence side, which is kind of the newest, maybe fastest growing aspect of it, which is making machines more intelligent. Within artificial intelligence, theres a few different types of artificial intelligence, right? Theres machine learning and theres deep learning. I was wondering, one, if you could touch a little bit on those two differences but then in addition to that also talking a little bit about the robotics and kind of more of the machine side of it. These are in some instances more basic machines to build, but were still seeing a lot of advancements because were using things like advanced materials, better batteries and things like that. I was wondering if you could talk a little bit about robotics as well as making these robots more capable outside of being smarter but being actually more physically gifted as well.
Eugene: Yeah, absolutely, I can talk about that. Lets start with the difference between machine learning and deep learning. Again, Im not a programmer, but I can tell you that artificial intelligence right now is being used in a very broad way. Machine learning, again, is thanks to a most recent wave in neural nets, and algorithms, and understanding that its easier in the long run to teach a robot to do something than to program a robot to do something. You have a lot of data, you train a robot on that data, and they can then adapt and learn to do things efficiently. Deep learning were to applying the next level of AI. Were applying insight. Not only is the robot learning how to do a task, its learning how to do it better. Its learning how to share that knowledge with other robots. Its observing its environment and maybe reporting on that. Theres a whole set, another, if you will, cognitive level thats arising with that. Again, most people dont realize that we take a lot of things for granted as humans. Robots and AI are still catching up. Theres still a lot to be done.
In terms of the physical or the hardware side of robots, the improvements in material science mean that we can have soft robots that have flexible grippers that can grasp a variety of objects. For pick and place operations, thats a big deal. You dont have to program it to rigidly pick up just one object over and over. Thats useful, but its much more useful to pick up multiple objects without crushing them or to place them in various types of containers. Also, soft robotics means that they become able to interact with humans better, that youre not worried about safety issues as much.
Another area you mentioned was battery. Honestly, thats a big issue. If you want to have a drone that is persistent in the air for a long time or you want to have a robot that rolls around the warehouse or shopping mall for a long time, you need a significant energy efficiency or battery storage to do so. All those things are steadily improving, and as they improve there is a greater flexibility and a greater capability that they offer.
Jay: Got it, now thats very insightful. Why dont we take a little bit of a break in terms of discussing robotics and artificial intelligence? I want to tap a little bit more into thematic investing because the way that we see robotics and artificial intelligence really fitting into the broader investment spectrum is within the thematic investing sleeve, which is really a top-down bottom-up approach starting with identifying powerful macro level trends. Thats kind of the top-down look. What are some big trends happening around the world that we have a lot of conviction in? Then the underlying the bottom-up analysis of looking at the underlying investment that stand to benefit from those trends.
If you think about this as a two-step process, the important thing is really on one hand looking for trends that we think are going to be very powerful and disruptive, that are highly likely to happen. This is what we call high conviction themes. Youre going to bet on a theme that you dont think is going to play out, thats probably not going to work out very well as an investment. The second aspect, that bottom-up approach, is really about investability. You could have a theme that sounds like a great idea, could be very high growth, but there simply arent that many companies out there to invest in. Through the ETF vehicle, of course, they have to be publicly traded as well. Some themes might just be not public in terms of these are private companies. The example I would like to use is space exploration could be a great theme, could be the final frontier, not very investible right now because there simply arent pure play companies that are listed on a stock exchange that could be invested in in an ETF.
The third thing we look at is time frames, so looking for themes that arent going to play out tomorrow or even over the next year but something that is really multi-decade in nature, perhaps even evergreen, if we apply this to robotics and artificial intelligence. Eugene, you were talking about how we are really in the fourth inning of robotics and AI, perhaps even earlier for AI. Thats exactly what were looking for within thematic investing. If youre trying to bet on something thats in the eighth inning, it puts a much bigger premium on trying to get the timing of the trade right rather than really doing your research on the trade and making it when you feel comfortable when theres a time and a place in your portfolio to make that trade, and then really letting it grow over time. Thats why we prefer the long-term timeframes over shorter term. In summary, really those three points, high conviction in the theme; highly investable, meaning a broad group of publically traded companies they can invest in; and third, the medium to long-term timeframe for that investment.
Specifically when were looking at robotics, we launched an ETF last year just about ten months or so ago. Its actually been one of our faster growing funds. I think it has about $180 million in assets now. The way we define robotics and artificial intelligence is really in four different categories, the first one being industrial robotics. This is really the traditional manufacturing companies, a lot of Japanese robotics manufacturers that are involved in everything from automobile manufacturing to the production of other industrial goods.
The second category is kind of a catchall for the non-industrial robotics. Not the automation aspect, but things closer to surgical robots, agricultural robots, etc., really everything outside of that industrial space. Third is unmanned vehicles and drones. This is where were seeing a lot of growth both in the consumer market as well as the commercial market. Obviously, a lot of people think drones are fun to fly around and a cooler version of a race car, but what were seeing increasingly is the usage of drones in terms of 3D imaging and mapping large spaces, whether its a building or doing quality control over a construction site, etc., really being able to use those imaging capabilities from a variety of perspectives.
Fourth is the artificial intelligence component. This is primarily a lot of imaging software. It also includes some hardware companies that are very crucial to artificial intelligence in terms of being able to compute lots of parallel computations at once. These are really the four sub themes that were looking for within the robotics and artificial intelligence space. We can probably glean from this that were not limited to just one geography or one sector, which is another important point to us about thematic investing. I like to think of this as the new sectors in a way. If you look at something like the technology sector, a lot of people will invest in it because they see it as this high growth segment of the economy. But that isnt a very precise way of targeting, certainly robotics, but also even just growth in general.
When you look at the technology sector, for example, about 20% of that sector is things like desktop computing, printers, credit cards, very basic technologies that are really growing at the pace of GDP growth around the world. Its not really the higher flying industries that people are looking for when theyre trying to access growth. Rather than just playing a broad sector thats going to include a mixture of these high-flying ideas with some of these slower-growing components, we think thematic investing is one way to isolate those higher-growth themes, whether youre looking at robotics and artificial intelligence, which some of these companies fit in technology, some of them fit in industrial, some of them fit in consumer staples or even healthcare. Also, looking at things like social media and looking at how thats a component of the tech space thats really faster growing,
The last thing that we like to look at for thematic investing is how these themes really interact with each other. I think a lot of people like to look at these themes in isolation. Robotics and artificial intelligence is one theme. The internet of things, which is about connecting ordinary devices to the internet, is a separate theme. Lithium is a separate theme on batteries.
What were seeing and what a lot of the research in the thematic space is showing is that when themes converge, they start to reinforce each other, which makes the themes all the more powerful. For example, what we see as the intersection of lithium, the internet of things, and robotics and artificial intelligence is a theme of autonomous vehicles. Why is that the case? Were seeing the car itself or the vehicle itself is the combination of robotics and artificial intelligence, being a machine thats able to operate in this environment. Increasingly, its relying on the internet of things in terms of were attaching a lot of sensors not only to the car itself to be able to understand its environment, but also to interact with other cars on the road, to interact with infrastructure, and to figure out if theres traffic somewhere or if theres a change in traffic patterns and it needs to move. Thirdly, the lithium theme in terms of autonomous vehicles, its much easier to refuel a car with batteries rather than with gasoline, which means that were seeing a lot of extra tail winds behind lithium because were seeing this rise of autonomous vehicles.
What does it mean that theres an intersection of these three themes? To us, if one theme is starting to lag behind, we believe the intersection of them together is going to pull it forward. For example, when we looked at autonomous cars a few years ago, what was the biggest hindrance to them being possible? It was actually a little bit of all of these.
On one hand, battery technology was too expensive and not dense enough for cars to travel large distances. Cars were not able to network with each other as effectively because of the lack of broadband, and also the artificial intelligence component wasnt there. Simply powerful computing was not able to be transferred to individual vehicles very effectively. What were seeing is a rise across all three of these themes, but its not necessarily felt equally across all of them.
For example, the robotics technology weve talked about has been available for decades. The machinery behind the self-driving cars is the same as the machinery behind a normal car. However, the artificial intelligence component and the lithium components have really been some of the faster growing areas that are necessary to build the larger theme. When we see the convergence of these themes, we really think it helps build the power behind all the themes collectively so that one really isnt going to lag behind the other. With that, were going to take a quick pause with another poll question here.
Moderator: This brings us to our second and final poll question. Which category of thematic opportunities is most appealing to you? Emerging technological themes, themes based on changing demographics and consumer habits, policy-related themes based on changes in regulations or fiscal spending, or other. As a reminder, you can click your response directly on the screen. Again, the question is which category of thematic opportunities is most appealing to you? The options are emerging technological themes, themes based on changing demographics and consumer habits, policy-related themes based on changes in regulations or fiscal spending, and other. Lets take a look at the results, and Ill hand it back over to you, Jay.
Jay: This certainly aligns with peoples interest in joining the robotics webinar today, looking at emerging technological themes. Also, probably somewhat of a relief to people that were taking a breather from policy-related themes, I know thats been very popular in the news today. Were obviously focused on technology, but also a little bit of the changing demographics and consumer habits. Some very interesting results
Eugene, I think were going to loop you back in here and do part two of the Q and A. We have a few more questions queued up, but we also see a lot coming in to the Q and A box here. Lets start getting you going again. First question for you, Ill probably chime in a little bit with this answer as well, but how do you think robotics and artificial intelligence is going to impact employment in the future?
Theres obviously a lot of fears that this could be such a disruptive technology that it actually starts to flip the economy on its head in terms of its really widespread replacing jobs. What does that mean for the economy going forward? What are your thoughts? Is that possible? How soon would that even be possible?
Eugene: I think we have to be careful not to panic. There is definitely going to be changes, and there are already changes just as there have been through the previous investor revolutions. Manufacturing is changing and is continuing to change, truck driving and farming is continuing to change, and so too is surgery. At the same time, we have to remember that at the end of the day, robotics and AI are heavy tools that companies and people use to make more money, be more efficient, so theres a choice in how those technologies are developed, and how theyre used. We dont have elevator operators in most places. We dont have people going out and harvesting wheat by hand anymore. That kind of change is going to continue with automation. I also think in terms of how soon the lower functions, the repetitive, boring work is likely to be automated, and that poses some problems for low-skilled employees, but the idea is that people with higher skills or who are able to operate these machines will actually find more opportunities.
Jay: Yeah, those are certainly interesting points. I pulled a couple of stats before this webinar that I thought were interesting. In 1840, 70% of the workforce in the US was involved in agriculture, which is down to 2% today, so weve already seen an entire industry that was even more powerful than manufacturing has ever been in the United States be completely collapsed into next to nothing. Of course, weve, over that time period experienced tons of wealth creation and growth across the country. In terms of manufacturing, if we look at 1950, this was peak manufacturing for the United States. It made up about 35% of the workforce, and now its down to about 20%, so a little shy of half the workforce in terms of percentages has gone out of manufacturing.
A lot of those gains have been felt by the services sector, but this isnt the first time this has happened. Technology has constantly been disrupting the economy and changing the nature of employment. I do think peoples worries are somewhat justified in the fact that technology is accelerating faster and faster, but I do think this also creates new opportunities for employment, whether its in programming, whether its at higher-value-add aspects of peoples jobs.
Theres actually a very interesting survey done by McKinsey, where they basically said 60% of jobs are going to be affected by robotics and artificial intelligence, and they found that about 30% of those jobs are going to be changed meaningfully. What they did is they specifically looked at the tasks that people do in their day-to-day job and figured out which ones can be automated and which ones cant with fairly proven technology. I think this really resonates with a lot of people because if we look at our day-to-day tasks, how often are we dialing a phone, setting up an appointment, responding to basic emails, doing the day-to-day household items in our email or in our office that isnt the best use of our time, or our intelligence, or our creativity?
I think those are going to be the first areas that really start to be automated with digital personal assistants or just smarter software. Thats not going to be a bad thing for the economy because thats going to free up our time to do the higher value add things, whether thats doing, from my perspective, researching and posting to our blog, whether thats from our clients perspective, being more client-facing, being able to get out in front of their clients more. I do think reasons to be worried because of the pace of technology, but at the same time this could actually be a very good thing for a lot of people who are being bogged down by tasks that really arent providing a ton of value.
Alright, the second question I think Eugene, you might need to explain the context behind this one a little bit, but we did get a question how large is the peril of AI entering in a new winter in the next four years?
Eugene: I think thats an interesting question because Im guessing that the questioner is referring to the fact that technology development is not always at a steady rate, and it can sometimes hit a period of slow down. In fact, that did happen with artificial intelligence. There were assumptions that we would have robots in our homes already back in the 1950s. People were designing things or imagining things, but we hit the limit of what we could program at that time. Then, again, with improved sensors, and neural networks, and machine learning, AI has again made a quantum leap forward.
Could it slow down again? Yes, but I dont think were at the limit yet of our current wave of innovation, so theres a lot of areas to which AI can still be applied. Also, one of the enabling technologies behind AI and as processors, and as processors become more dense, more capable, faster thanks to Moores law, and new materials beyond silicon make processors even more powerful, I think thats going to improve.
In the short term, weve also moved to cloud computing, so were not just trying to cram all of the intelligence of a robot into the robots body. If it has a proper 5G connection, in theory, it can share knowledge with other robots. it can tap into the wisdom of the crowd, so to speak, so theres going to be a lot of area in the near future where AI and robotics can still grow, but we should not assume that all technologies progress evenly, at all times, everywhere. I think thats a mistake.
Jay: Great. Thank you. Weve had a lot of questions about specifically our BOTZ ETF, so Im going to address a couple of those quickly before we turn it back over to Eugene for a few of his insights. First off, to bucket a few questions here together, so one, we do have an ETF with a ticker BOTZ, which is the robotics and artificial intelligence ETF. It invests in about 30 companies around the world. Specifically, we see about half of the exposure in Japan, which has been quite the hotbed for industrial automation companies, but theres also quite a handful of companies coming out of Europe and the US as well.
When we specifically look at which companies are to be added to the ETF, the index provider is looking at these four categories. I think the important thing to note is I made the comparison to a sector ETF. This is really how sector ETFs are constructed as well. If you think about the financial sector, how is a company classified as a financial firm? Maybe that question seems obvious to some people. Of course, a bank would be a financials firm, but really the way that its built up is the index provider starts to lay out what are the criteria that makes up financials? It could be regional banks. It could be trading firms. It could be asset management, down the line.
Thats essentially what was done with this ETF as well in the index that it tracks, which is looking at the specific segments of the robotics and artificial intelligence market, whether its industrial robotics, non-industrial robotics, unmanned vehicles and drones, and artificial intelligence. Those are what I guess I would call the sub-industries that fold up into the robotics theme, so were taking from those four different categories. The fund reconstitutes on an annual basis. We actually just underwent a reconstitution two weeks ago and saw two new companies added to the fund, so that, in one way, continues to stay updated as the industry matures. Hopefully, that answers a few peoples questions that were coming up.
Im going to pick through a couple more questions here for Eugene to answer. If you dont mind, Ill just pause one second. Alright, I think were getting a few questions on related topics as well such as 3-D printing and virtual reality. In your mind, Eugene, are these related to robotics and artificial intelligence? I guess a better question is how far and wide are these things going to impact all aspects of technology? Is it going to be involved in printing? Is it going to be in gaming? Is it going to be entering the energy space in oil and gas? How far can we really see this theme spread?
Eugene: Thats a great question, and in fact, we do see them as related technologies. Robotics Business Review, we cover robotics in a very broad sense because 3D printing is being used in automated manufacturing. Virtual reality and augmented reality are being used in the control of robots. Not all robots are fully autonomous, so if were talking about undersea drones for say, oil exploration, or maintenance of offshore oil rigs, that may be done with a human pilot but using cutting-edge technologies. I would say theyre all connected, and theyre all advancing, some faster than others.
Building manipulation are definitely key to the eventual development of household and consumer robotics, but at the same time, VR and AR have proven to be useful for inspections, whether its of facilities theyre even talking of using drones inside warehouses to help with supply chain flow. AI may eventually become ubiquitous in that its no longer just something that is a special characteristic of a robot but that your household is connected to whatever intelligence, or your factory relies on the intelligence to maintain optimal throughput. They are all related, and they are all advancing.
Jay: What does that mean for the owners of that data? We see search engines have made data so easy to access and so ubiquitous, but it also sounds like proprietary data is going to be a real competitive advantage for certain companies as well. I mean, if youre saying that the artificial intelligence is really the ability to tap into these databases, do you think people are going to start trying to hoard their own data because thats really where the value is? As maybe we progress, the computing aspect becomes a little bit more commoditized?
Eugene: Yeah, I think youre correct. I mean, were a long way from the hardware all being commoditized with, again, advances in materials handling and the materials science underlying it, but the differentiator for robots is, in fact, going to be their capabilities, their programming, their AI ability, and the amount of data thats being generated, and then the ability to analyze that data in real time and derive an insight. Imagine if you had a drone inspecting a bridge. Yeah, the human pilot may have sent it out, but the drone spots corrosion and can immediately start to repair it, without human instruction on where to fly, and how to apply the sealant, and all that. The drone can do all those things on its own.
Thats going to be a big area of differentiation and an area where innovation will still matter. Theyre not all going to be equally smart. Theyre not going to be equally capable. Youre still going to have single-purpose robots, but what really makes the robot useful is can it understand and interact with its environment immediately and not necessarily wait for human interaction or wait for the data to be collected, analyzed, and then flown back out. Thats a technical challenge, but its also an opportunity.
Jay: This actually, I think, dovetails nicely with the next question, which is how do you really weight the opportunity between autonomous robots and robotic assistants? Or the difference between robotics being able to just be sent out and do their own thing and not need a lot of input versus machinery that really enhances what humans are capable of, whether thats advanced tools, or exoskeletons, and things like that.
Eugene: I think a lot depends on the use case. In manufacturing, or in energy production, or in agriculture, you dont necessarily need a human on sight the whole time, but ultimately, the robots that interest people are the ones that interact with people, so whether its an exoskeleton helping someone walk, or a robot reminding your grandmother to take her pills, or a robot that goes out and mows the lawn, theres different amounts of autonomy that are desirable, and there are different amounts of interactivity that are desirable depending on the function. I think, again, thats an area where theres a lot of room for development. I covered the DARPA Robotics Challenge a year or two ago, and we think oh, a robot walking up the stairs and opening a door by using a gripper to hold the hinge. We think thats easy, and it proved that its not easy, let alone looking around and understanding oh, thats a flower, or thats a dog. Theres a lot of room there to apply all kinds of AI. Again, the interactivity with humans I think is going to be an area of a lot of interest as they become more capable.
Jay: Great. Heres another question that I think is interesting. Who is funding the growth of robotics and AI? Is it coming from private companies, from private equity venture capital, governments, universities? Where do you see those in the pecking order?
Eugene: Thats also a good question. Thats one that actually varies a lot by region. In the United States, we do rely a lot on private investors, such as your audience. I think thats one of the reasons why there is a focus on useful robotics. Thats an important trend both for AI and robotics is that theyre not just interesting projects. Theyre projects that have a practical application. At the same time, a lot of the early stage research in robotics and in AI is done through universities, is done through government funding like DARPA, or the Horizon 2020 program in Europe.
Whats interesting is that a lot of other countries have national strategies around automation, and so youll have a country like China, or Japan, or France that will say okay, were going to make an effort to develop automation in this area, or in these areas. In the United States, we rely on private funding and on major institutions to do that.
Jay: Oh, thats fascinating. Theyve actually come out and said we know that in this segment of the economy we specifically want to target it with automation, and essentially either protect the jobs in the other segments or make this segment as cheap as possible through automation. Is that essentially whats happening in places like Japan and France?
Eugene: In China in particular obviously, we know that China is the worlds factory, and there is a definitely policy to try to encourage domestic innovation, domestic production of robots. Right now, China imports most of its robots, but thats something that theyre working to change, understandably. At the same time, the United States as a net exporter of technology has an interest in finding new markets and in places that you would not think. Oh, agricultural robotics is big in Australia, or healthcare robotics could be really big in Africa, or drone delivery could be big theres so many areas where these technologies are just beginning to be applied.
Jay: Alright, I think we have time for just one more question. I think this is an interesting one as well. We dont focus on this in the BOTZ fund, but are there any specific materials that are really crucial to the advancement of artificial intelligence and robotics? Any unique metals or other types of materials that we dont really think of as being a crucial input?
Eugene: The one I think thats interesting that goes back to the 3D printing question is what materials do you want to build your robot out of? In general, the things that youre looking for are strength, and weight, and reliability. One of the challenges has been historically the motors, the actuators that are involved, the components of the robot. You can make a case that you actually want the best possible components because the sum total is going to be more reliable, or more lightweight, or have greater endurance because of that.
We were talking before about lithium batteries. If a new technology displaces that, thats going to be huge. In terms of soft robotics, we talked about compliant grippers, so were not talking about necessarily metal on metal contact. Were talking about new, flexible materials, and 3D printing has already revolutionized a lot of that manufacturing, not just prototyping, but within two or three years, all hearing aids in the US went from being produced by plastic injection mold to being 3D printed. That is a tremendous change because of automation and related technologies. Were going to see that kind of thing continue.
Jay: Excellent. Well, Eugene, thank you so much for joining us today. I really appreciate your insights. Please do check out Robotics Business Review where Eugenes writing constantly about everything across the industry and across the globe. Really some of the most cutting-edge information out there on the robotics space. Also, thank you everyone on the line for joining as well. I really appreciate you dialing in today. We did use up all the time, but we will do our best to reach out and continue to provide the answers that you guys sent in. Thank you so much for your time. If you do have more interest in robotics, I would suggest that you visit our site at http://www.globalxfunds.com/research, where were putting out constantly different reports and insights on whats happening in the robotics space, but thank you everyone for joining, and Eugene, thank you very much.
Eugene: Thank you.
The post Webinar Replay: Investing in Robotics & AI appeared first on Global X Funds.
IoT stands for the Internet of Things
Surveys & data cited in the webinar:
Investing involves risk, including the possible loss of principal. The investable universe of companies in which BOTZ may invest may be limited. The Fund invests in securities of companies engaged in Information Technology which can be affected by rapid product obsolescence, and intense industry competition. In addition to normal risks associated with investing, international investments may involve risk of capital loss from unfavorable fluctuation in currency values, from differences in generally accepted accounting principles or from social, economic or political instability in other nations. The fund is non-diversified which represents a heightened risk to investors. Shares are bought and sold at market price (not NAV) and are not individually redeemed from the Fund. Brokerage commissions will reduce returns.
Carefully consider the Funds investment objectives, risk factors, charges and expenses before investing. This and additional information can be found in the Funds full or summary prospectus, which may be obtained by calling 1-888-GX-FUND-1 (1.888.493.8631), or by visiting globalxfunds.com. Read the prospectus carefully before investing.
Read more here:
Posted in Robotics
Comments Off on Webinar Replay: Investing In Robotics & AI – Seeking Alpha
US Armed Forces Order 32 Endeavor Robotics SUGVs (Multi-Video) – 107.180.56.147 (press release) (registration) (blog)
Posted: at 6:12 am
All of us at Endeavor Robotics are singularly focused on the development, delivery, and sustainment of life-saving robot technology, saidSean Bielat, CEO.
The delivery of 32 SUGVs equipped with our uPoint Multi-Robot Control System advances the entire install base in terms of interoperability across the family of Endeavor Robotics systems.
These systems will augment the approximately 1,000 SUGVs already in use by our Armed Forces.
We could not be more proud of the American warfighter and remain a dedicated partner to the United States Armed Forces.
The Endeavor Robotics SUGV has been in service across the United States Armed Forces since 2009, providing dismounted operations with a back-packable, easily deployable, rugged less than 20 lb robot.
(See the Endeavor Robotics Kobra participating in the Army Warfighter Assessment (AWA) at Fort Bliss, TX. Courtesy ofEndeavor Robotics and YouTube)
SUGV meets IP67 ratings, operates in all environmental conditions, integrates multiple sensors and hardware for increased capabilities, climbs and descends stairs, provides dexterous and robust manipulation and lift/inspection capabilities while also being capable of extending operational range through mesh networking with other deployed Endeavor systems.
The Endeavor Robotics uPoint Multi-Robot Control System consists of an Android-based, rugged, tablet controller and Persistent Systems, LLC, MPU5 Radio network.
The integration of the mesh networking with Endeavor Robotics robots is a force multiplier for our warfighters by significantly increasing the distance of unmanned ground operations and enabling operators to control or observe multiple robot assets through a common controller interface.
Endeavor Robotics robots serve on the front lines around the world.
To date Endeavor Robotics has delivered more than 6,000 unmanned ground vehicles worldwide and brings decades of experience sustaining, integrating, and developing new end-user identified capabilities for ground robotic systems.
Endeavor develops their tactical mobile robots in concert with operators worldwide and systems have been delivered and operated in areas of conflict and in response to natural disasters.
Visit link:
Posted in Robotics
Comments Off on US Armed Forces Order 32 Endeavor Robotics SUGVs (Multi-Video) – 107.180.56.147 (press release) (registration) (blog)
Robots Invade Broward County Public Schools At ‘Battle Of The Bots’ – WLRN
Posted: at 6:12 am
Robots are invading Broward County Public Schools.
On Wednesday, a Battle of the Bots capped off three days of robot training for about 100 Broward teachers who will be bringing the robots to their classrooms this fall. The robots are being provided by a grant from NASA and the Robotics Education and Competition Foundation to give students hands-on building, coding and engineering experience.
The robotics jobs, STEM jobs theyre high-paying, low-staffed and important, said Christopher Martin, who is helping develop the new Robotics curriculum at Cooper City High School. We have people that have to learn to communicate well, to document their process, to work with others and sort out arguments and fail. We teach kids to fail, and fail often, and keep working.
Some of the teachers said their schools already had brought robots into the classroom, though the ones provided by this grant (called VEX robots) are higher-end.
I had a student who was really quiet, really shy, really kept to himself, said Gabriel Andrews. He teaches at Stranahan High School, an engineering magnet, which had previously incorporated robots in its curriculum. After the in-classroom robotics competition, he was starting to come out of his shell. You would see him smiling a bit more. He would have interactions with some of the students.
Schools are being encouraged to host smaller robotics competitions amongst themselves, and the school district will host a regional to qualify teams for the state level tournament, where students could compete to go to Nationals and then Worlds.
The teachers think the competition aspect of robotics helps pique interest and get students involved so that they will hopefully continue pursuing programming and engineering"
The direction that our technology is going is more robotic, said Thia Thomas, a sixth and seventh grade science teacher at Coral Springs Middle School. Shell incorporate a robot into her after-school program. This also will build the team-building, and we have to go through the scientific design process in order to build the robot and solve the problem. So its not just making them work together as a team, but its also exposing them to newer technology."
The grant will be rolled out over four years, starting with 55 Broward County schools for the 2017-18 school year.
See the article here:
Robots Invade Broward County Public Schools At 'Battle Of The Bots' - WLRN
Posted in Robotics
Comments Off on Robots Invade Broward County Public Schools At ‘Battle Of The Bots’ – WLRN
Mouni Roy’s Version Of Baadshaho Song Rashke Qamar Will Blow Your Mind Away – India.com
Posted: at 6:11 am
Mouni Roy is perhaps one of the most successful actresses in Indian television at the moment. She began her career with the iconic TV show, Kyunki Saas Bhi Kabhi Bahu Thi and then went onto do Naagin 2, which was a huge hit. The actress is also known for her amazing dance skills which she has proved in herlatest video thats gone viral on social media.
In the new video, the actress dances with such grace that for a moment we forget that the song hasnt been originally picturised on her. Seen wearing a beautiful olive green salwar kameez, the actressis seen gracefully dancing to the popular song Tere Rashke Qamar from Ajay Devgn and Ileana DCruzs upcoming film, Baadshaho. She looked absolutely ravishing in the outfit that she also wore during the Raksha Bandhan ceremony at actress Aamna Sharifs residence.
We always knew that the actress had a strong fan following. But, that belief was further strengthened after her insta story, in which she captured the dance, got shared on various social media platforms within moments of her uploading the video. (ALSO READ:Mouni Roy And Ravi Dubey Cant Stop Singing Praises For Each Other)
Check out the video below
Meanwhile, on the work front, she was recently spotted with her favourite star, Salman Khan, shooting for the upcoming reality show, Bigg Boss 11, that will be showcased a month in advance than usual. She will also be seen making her Bollywood debut opposite Akshay Kumar in Gold, produced by Ritesh Siddhwani. We will also get to see actors Amit Sadh and Kunal Kapoor in pivotal roles in the movie.
Original post:
Mouni Roy's Version Of Baadshaho Song Rashke Qamar Will Blow Your Mind Away - India.com
Posted in Mind Uploading
Comments Off on Mouni Roy’s Version Of Baadshaho Song Rashke Qamar Will Blow Your Mind Away – India.com
Blockchain could fix a key problem in China’s food industry: the fear of food made in China – Quartz
Posted: at 6:11 am
Behind every food item being sold, theres a story to tell. In China, where food scares are common, many consumers are particularly anxious to hear it.
With that in mind, a Chinese e-commerce company has made it possible for customers to look at a detailed history of their steaksfrom when the cow was born to what it was eatingbefore its served on their dinner tables. The information is being made available with the help of blockchain, a technology known for being hard to tamper with.
JD.com, Chinas second-largest e-commerce platform, has been working with Kerchin, an Inner Mongolia-based beef manufacturer, since early May (link in Chinese) to use blockchain to track the production and delivery of frozen beef. People living in Beijing, Shanghai, and GuangzhouChinas most populous citiescan now track the journey of beef ordered from JD.
Food fraud costs the global food industry some $40 billion each year, according to a 2016 report by PwC, but Chinese consumers are particularly fearful about food safety. Their confidence in domestic food products plummeted after tainted milk powder killed six infants in 2008. Today, exposs of fake foodnot all of which are truecan spread like fire on Chinese social media platforms like WeChat and Weibo, only adding to the confusion and distrust. When problems do arise, the lack of transparency about how food is processed makes it challenging to pinpoint where in the supply chain things went wrong. Instead of being centralized, information is often made available to manufacturers, warehouses, and delivery companies separately.
Blockchain is most frequently associated with bitcoin. To solve one of the fundamental problems of the cryptocurrencyand keep people from double spending their digital moneyblockchain is used to publicly record every bitcoin transaction. The technology, born in 2008, creates secure copies of a ledger and provides a mechanism for various parties to check and agree on a set of facts, which, after being recorded, cant be changed. The secure nature of the technology has led to new uses, such as tracking land ownership or tracing the origin of a steak. (The latter use is also being tested, as of early this month, by Golden Gate Meat Company in San Francisco.)
The information cannot be falsified, says Josh Gartner, JDs spokesman. In their partnership, JD will be responsible for the logistics of getting the meat to customers, while Kerchinwhich had about $300 million in revenue last year, 10% of it from online sales of beef productswill ensure the authenticity of all product information, he adds.
To design and develop its blockchain, JD adapted the architecture from Hyperledger, an open-source project that lets enterprise developers use blockchain technology in various industries.
The process to encode data to blockchain begins with Kerchin scanning barcodes to collect and store data in its own supply chain before providing it to JD, which writes the information to blockchain. After that, any changes require a digital signature, and both parties will immediately be informed of any modifications.
To understand the process, I ordered an eye-round steak, a cut from above the cows rear-leg region, from JD on the afternoon of July 14 in Guangzhou. Weighing 200 grams (0.44 lbs), the meat arrived the next day, delivered by a JD courier. Encased in a black box, the front had an opening showing the cut of beef while the back had a QR code and instructions for pulling up information about my food.
Scanning the code using JDs app loaded a webpage in the apps browser titled The wonderful journey of the beef. Underneath those words was an image of a cow sitting in a meadow. The next page showed the cows serial number and a 64-digit alphanumeric code that refers to the sales transaction.
There was plenty to explore. I learned that my cow was three years old, weighed 605 kilograms (1,338 lbs), and was tended to by a local vet named Na Qin before being slaughtered on July 2. A Simmental breed, the cow lived on a farm Kerchin identified as 1556, and was fed a diet of corn, wheat, and straw. (The number lets Kerchin track down a farms location.)
After the cow was slaughtered, its meat was then subjected to a number of tests to detect bacteria, water content, and animal-growth promoters. At this point, my steak was declared free of ractopamine, a drug banned in China thats used to bulk up animals (paywall) weeks before they are slaughtered.
While blockchain is hard to tamper with, tracing the origin from calf to chuck steak isnt foolproof. John Spink, who studies food fraud at Michigan State University, tells Quartz that fraudsters are very creative and constantly change their methods. In a 2013 blog post, he wrote that traceability is not a single magic-bullet to stop fraud, but it is a critical part to reduce food fraud, adding that bad actors can also operate from within. In some cases [the] criminals are hiding within the legitimate supply chain so [they] could defeat even a very technologically advanced countermeasure, Spink says.
JD also admits that there might be lapses in data thats tracked, depending on when in the process each party begins to input and share that data, says Gartner. Because of this, the company will periodically perform spot checks (link in Chinese) at Kerchins factories to examine how information is recorded and verify the validity of the data.
Chinese agencies have experimented with other traceability methods in the ongoing fight to restore consumer faith in the food system. The National Platform for Tracking Food Safety, backed by Chinas top planning body, has made more than 72.6 million items (link in Chinese) available for supply-chain tracing using barcodes as of Aug. 9. According to a 2015 paper in the peer-review journal BioScience Trends, the implementation of food traceability requires a substantial amount of valid information. However, Chinas supply chain often involves small factories, and they generally lack dedicated platforms for the exchange of logistics information.
A number of companies besides JD believe blockchain can solve this problem.
Alibaba, Chinas largest e-commerce player, announced in March a plan to use blockchain to track beef from Australia, one of Chinas key sources of beef, by working with three local companies, including accounting firm PwC Australia.
In October, Walmart also introduced blockchain into its Food Safety Collaboration Center in Beijing. Working with IBM, the retailer recently completed two pilot tests to help move pork from Chinese farms to its stores. The technology has helped reduce the paperwork required to process the containers. Those sorts of transportation documents, such as the bill of lading, can easily be tampered with or copied, making the supply chain vulnerable to criminals who can replace goods with counterfeit products, a type of maritime fraud (paywall) that costs billions of dollars each year.
Starting this September, China will work with the European Union on a project called EU-China-Safe, which will use blockchain and other technologies to regulate food safety. Belfast-based startup Arc-Net, one of the projects partners, has developed a blockchain platform to support the identification of animal protein from birth, says CEO Kieran Kelly.
Its possible that scaling up blockchain could allow consumers to track all products back to their source, but that vision is still far away. In the case of Kerchins beef, only two parties are involved in gathering and uploading information, but the global supply chain poses more challenges. Cargo often passes rapidly through multiple hands, and parties in supply chains dont often share data. As the supply chain gets longer, an enormous amount of collaboration and transparency is needed. And of course, not all companies are eager to share their data and business practices.
Read next: In China, consumers have to be on guard not just against fake food, but also fake news about food
Read next: Chinas FDA is using instant messaging and web videos in its fight to dispel internet food rumors
See more here:
Blockchain could fix a key problem in China's food industry: the fear of food made in China - Quartz
Posted in Mind Uploading
Comments Off on Blockchain could fix a key problem in China’s food industry: the fear of food made in China – Quartz
Virtual reality ads are still more hype than reality – Digiday
Posted: at 6:10 am
Any medium is an advertising medium, so the industry is now waking up to the prospect of advertising in virtual reality.
A growing number of experimental technologies are trying to place advertising in VR, a technology that still lags behindaugmented reality (think Pokmon Go) and mixed reality (a 3D version of AR).
Unity, a VR development company, announced last month it would launch Virtual Room, an ad network of sorts that lets brands to place ads across VR apps. The company worked with Lionsgate to use the platform for the upcoming movie Jigsaw, so people will see ads in an immersive VR experience.
Thats a step ahead ofbrands current forays in VR, which have mostlybeen standalone experiences and not ads. For example, USA Networkcreated a VR experience that let fans of its show, Mr. Robot, venture deeper into the dystopian world the showinhabits. Korean company Innisfree let people take a VR bicycle ride through Jeju Island, which is known for its natural wonders. Samsung, in a bid to increase attention for its VR products, created Bedtime VR Stories that let parents and kids go on far-flung adventures right from their bedrooms.
Another big player in the VR ad bonanza will, of course, be Google. In late June, it announced it was working on native, mobile VR ad formats at Area 120, its workshop for new, experimental ideas.
The first experimental idea is a cube that VR users will see. When a user taps it or looks at it for slightly too long, it will open a video player the user can watch.
Google is asking VR developers to apply to Google if theyre interested in testing the format.
VR ad formats should be easy for developers to implement, native to VR, flexible enough to customize and useful and non-intrusive for users, developers Aayush Upadhyay and Neel Rao wrote in a blog post about the cube.
But like most things in advertising, the hype is so far unfounded.
A Forrester Research report found that 42 percent of adults in the U.S. have never heard ofVR headsets. A report by Yes Lifecycle Marketing found just 8 percent of marketers are using VR in ads, with 35 percent saying they have no intentions to use it. Widespread adoption is years off. According to Deutsche Bank, there will be 154 million mobile VR usersby 2020. By then, hardwarewill have improved and gaming and entertainment companies will have increased their use ofthe technology, with othersfollowing suit, according to Forrester analyst Samantha Merlivat.
A lot of it is just about how slow the consumer adoption rate is, said Joe Croson, director of interactive production at BBDO, which last year debuted a traveling VR experience for AT&T and Toms that let people take a virtual shoe-giving trip to Colombia. Because so few people ownheadsets, he sees the most promise in brands have to put their ads in an installation where people can experience it.
Cost is another hurdle. While brands would love immersive, entertaining ad formats that people actually want to watch, VR ads can be pricey. Time and money is spent at just the concept stage, even beforeresearch and development and production costs come in.
In a Forrester report,Ogilvy innovation director Dayon Daumont said for a high-quality VR experience, brands need to spend $500,000 just for content creation. Meanwhile, the reportestimated the cost to createa 360-degree video, which is considered VR-light, runs between $10,000 and $100,000.
Jourdain May, senior content producer at The Program in Portland, Oregon, said brands can cut costs can be cut by doing 360-degree video, which doesnt require a headset as VR does. Focusing on things like spatial sound design, branded interactive menu selections and noise-canceling headphones can make the video feel more like reality youre there in the scene,May said. Cameras with multiple lenses will do the 360 stitching internally and spit out an image that can be posted directly to social media, May added.
Thats why 360 ads are slightly ahead of the market. Many companies now create sponsor ads. One is VirtualSky, which makes five- to 10-second 360-degree experiences that play when someone is in the middle of VR content. The company also makes longer ads up to 30 seconds long. Viewability is not an issue, companies say, since the advertising literally surrounds viewers. VirtualSky recently worked with Posts Fruity Pebbles cereal for a 30-second pre-roll spot that sprays viewers with water and hits them with dodge balls. Other brands such asBMW and AT&T have all used 360-degree film, which is supported on YouTube and Facebook.
For Croson, the ideal approach now isto make experiential VR ads like BBDO did with AT&T, which can be watched usingGoogles inexpensiveVR headset, Cardboard,then shoot 360-degree videos for Facebook or YouTube, which dont require any headset. Platform developers need to provide more of the technology and adoption needs to get there, he said. Gaming is driving forward a lot of this interest, but were a waysbehind. And so people find that a 360-degree video is a more effective way, or mixed reality.
What may drive intent for brands to create VR ads will be the technology itself catching up.
Weve seen the most success with 360-video and VR-type work when the client finds the right opportunity to use immersive experience, said May. If its not something that would be best communicated through an immersive experience, then stick to traditional mediums.
Originally posted here:
Virtual reality ads are still more hype than reality - Digiday
Posted in Virtual Reality
Comments Off on Virtual reality ads are still more hype than reality – Digiday
Samsung and Live Nation to Stream Coldplay’s Chicago Concert in Virtual Reality – Variety
Posted: at 6:10 am
Samsung andLive Nationwill broadcast Coldplays A Head Full of Dreams Tour live in virtual reality from Chicagos Soldier Field onAugust 17, starting at9:30 pm ET.
Fans using Samsung Gear VR in more than 50 countries will need a Gear VR headset with a compatible Samsung smartphone, and navigate to the Samsung VR service. A concert replay will also be available on Samsung VR for a limited time.
Through our industry-leading VR hardware and platform ecosystem, we are thrilled to offer Samsung Gear VR owners access to premium, immersive live entertainment and experiences in full 360, saidMichael Schmier, Vice President of Content and Services, Samsung Electronics America. Live Nation is a trailblazer when it comes to producing live virtual reality concerts, and weve been excited to bring Coldplay into the mix since announcing our collaboration with Samsung and Gear VR in late May,added Kevin Chernett, Executive Vice President, Global Partnerships and Content Distribution, Live Nation.
Coldplay has performed before 5 million fans on its Head Full of Dreams Tour since its launch in March of last year, according to promoter Live Nation.
Visit link:
Samsung and Live Nation to Stream Coldplay's Chicago Concert in Virtual Reality - Variety
Posted in Virtual Reality
Comments Off on Samsung and Live Nation to Stream Coldplay’s Chicago Concert in Virtual Reality – Variety
How Virtual Reality Is Revolutionizing Healthcare – ATD (blog)
Posted: at 6:10 am
The virtual reality revolution is here. A new generation of VR headsets brings immersion to new levelsthe feeling of presence, of actually being in another place. Instead of watching a computer screen that seeks to emulate reality, VR feels like reality. You turn your head and see a nurse standing to your right. You look down and see a patient. You hear the sound of the MRI machine to your left. Room-scale positional tracking allows you to physically walk around and see your hands for realistic interaction and haptic feedback.
Consider a recent front page Wall Street Journal feature that examines VRs critical role in the future of brain surgery training. I can figure out how best to approach a tumor and practice it so that when I get into the operation, its as if Ive been there before, said Dr. Gary Steinberg, Stanford Universitys head of neurosurgery.
No doubt, VR technology is hacking our senses of sight, hearing, and feeling to create an intense and convincing sense of presence in the virtual reality that is unrivaled by any other medium. All for the cost of just a few hundred dollars for each hardware headset, and software cost is dropping precipitously as well. In fact, medical virtual reality simulators can be created for any task thats too dangerous, expensive, or inconvenient to practice in real life.
VR offers embodied cognition, which means learning with your mind and body, and numerous research studies have confirmed the importance of activating the muscle memory. Its no surprise that every medical student learns and practices with cadavers and in high-fidelity simulation labs with mannequins and actors.
Virtual reality offers these embodied experiences and more. One thing VR does better is to change scale and perspective. Users can travel inside the human body and explore it at molecular level. Fr example, flying through a cell or riding a rollercoaster through the arteries, patients can experience their own anatomy and students can learn complex medical concepts.
The in-body VR experience can be based on CT or MRI scans of an individual patient or a computer-generated environment. The best approach depends on the purpose. Meanwhile, 3D models provide superior interactivity, fidelity, and 3D effect. Stanford Children's Health developed a 3D model of the heart for patient education. Instead of describing the complex 3D dimensional process of the heart in words and flat images, they let parents strap on the Oculus Rift VR headset and step inside the heart. Using hand controllers, parents can grab and rotate the different pieces of the heart and see their childrens defects.
The visceral sense of embodying another person is why virtual reality has been hailed as The Ultimate Empathy Machine by film maker Chris Milk. For instance, experiencing your future self in VR reduces stereotypical attitudes towards the elderly and even encourages people to save more for retirement.
Research has validated the Proteus Effect, in which the behavior of an individual, within online virtual worlds, is changed by the visual characteristics of their avatar. Stanford research has even demonstrated how the feeling of being a cow increases connection to the animals. In other studies, cutting down trees in VR impacts users connection with nature, making them recycle more paper.
Imagine using a technology powerful enough to make you feel like a cow or a tree, to make caregivers feel like a patient. Leading healthcare providers are already developing VR patient empathy simulations. Veterinary clinics are even using VR to show the perspective of a cat, dog, or snake. Staff members learn not to startle a cat after experiencing how a cat sees the world in VR.
Advertisement
Virtual reality is not only disrupting healthcare learning, but also treatment of many conditions. It has already proven more effective than narcotics for pain reduction of burn victims. Patients are distracted during re-bandaging in a Winter Wonderland where they are challenged to throw snowballs at snowmen. Virtual reality is also used to treat amblyopia (lazy eye). One study demonstrated a 60 percent success rate for adult and kids, compared to 40 percent success rate of current treatments.
Mental health treatment is another area of intense focus of early VR applications. One study found that fear of public speaking was reduced by almost 20 percent in just four weeks with VR exercises. Another study found that 87.5 percent of participants reduced their fear of heights with VR. It has even reduced PTSD symptoms among military veterans who didnt respond to traditional forms of exposure therapy.
Whenever a technology comes along that is powerful enough to take you out of your body to reduce pain, rewiring the brain to treat amblyopia, and take veterans to a battle field in Afghanistan to reduce PTSD, the healthcare profession is taking notice.
On the heels of virtual reality is augmented reality, which brings the digital world to the real world. The promise of AR glasses that can give a surgeon x-ray vision is not here yet. But prototypes are already being built on the developer version of the Microsoft HoloLens headset. The AR headsets are expected to hit the mass market in two to four years. Meanwhile, a new generation of inside-out-tracking cameras in iPhones and Android phones and tablets can be used for a number of more mundane healthcare tasks like way-finding and performance support. For example, hold up an iPad to an EKG machine and learn how to trouble shoot it, or watch virtual arrows on the floor to find your way to the imaging department.
How do you get started with virtual reality in your healthcare organization? It starts with demonstrating it to decision makers. VR suffers from the Matrix problemyou have to experience it to believe it. So, get one of the premier PC-powered virtual reality headsets, such as Oculus Rift or HTC Vive, and run demos with stakeholders. You need to buy a VR optimized laptop too. Dont get a mobile phone-powered virtual reality headset, they will not show the full power of VR. Although there is not a lot of off-the-shelf healthcare content available yet, one good demo to start with is 3D Organon VR Anatomy, which is available for both the HTC Vive and Oculus Rift.
When your decision makers have experienced VR, you need to identify a healthcare problem that can be uniquely solved with VR. Find a team of VR developers to help bring the idea to (virtual) reality. Most VR is developed in the Unity game engine, which is cross-platform. One effective way to leverage the investment is to develop a desktop or mobile version of the same program for minimal extra cost. My firm recently developed a patient empathy simulation for the desktop for broad distribution and a VR version of the same program featured at events.
Bottom line: virtual reality is here. Dont wait for other organizations to force your hand. Pick a low hanging fruita patient education task or staff performance issue that can benefit from a full-body immersive experienceand create an awe-inspiring, transformative VR experience. The time to leave the glowing rectangular screens to step into the virtual reality of the healthcare future is now.
Want to learn more? Join me September 22 for the webcast How Virtual Reality Is Revolutionizing Healthcare.
See original here:
How Virtual Reality Is Revolutionizing Healthcare - ATD (blog)
Posted in Virtual Reality
Comments Off on How Virtual Reality Is Revolutionizing Healthcare – ATD (blog)
The First Mind-Controlled Virtual Reality Game Has Arrived – Futurism
Posted: at 6:10 am
In Brief Startup Neurable just unveiled the first virtual reality game that users can control with their minds. The game is just one example of the rapidly growing field of tech based on brain-computer interfaces, or BCIs. Telekinetic Powers
Part of the appeal of virtual reality (VR) is the ability to control the digital world using only your hands and simple movements. Startup company Neurable, in collaboration with the Madrid-based company Estudiofuture, is eliminating controllers and hand movements altogether with their first game:Awakening, which aims to show what its like to have telekinetic abilities.
Neurable Vice President Michael Thompson announced the game last week ahead of its appearance at the computer graphics conference SIGGRAPH. The game, set to be released in VR arcades in 2018, has a story similar to that of the Netflix series Stranger Things:You are a child held prisoner in a government science laboratory. You discover that experiments have endowed you with telekinetic powers. You must use those powers to escape your cell, defeat the robotic prison guards, and free yourself from the lab.
Speaking with IEEE Spectrum, Neurable CEO Ramses Alcaide explained that his companys headset strap, attached to a modified HTC Vive headset, uses several electrodes positioned in specific areas that detect brain signals known as event-related potentials. These small electric changes in the brain are tied to movements, sensory experiences, or thoughts as they happen.
Though Neurables technology might be exciting for gamers, such brain-computer interfaces (BCIs) are being researched for much more widespread applications: from neuroscience research to mind-controlled web development, to brainwave-based marketing and tracking brain activity the way many track their steps. The technology is also being developed to help those with locked-in syndrome unable to move or talk communicate with the outside world.
Some researchers have expressed skepticism that this technology can ever be commercially viable; Jack Gallant, head of UC Berkeleys Neuroscience Lab, told theGuardianitwas conceptually trivial but just about impossible to do due to the difficulty of decoding brain signals through the thick human skull. But Alcaide seems to think the ease with which people have usedAwakeningbodes well for the techs future.
A lot of people come in highly skeptical, because BCI has been a disappointment so many times before, Alcaide told IEEE. But as soon as they grab an object, theres a smile that comes over their faces. You can see the satisfaction that it really works.
Continue reading here:
The First Mind-Controlled Virtual Reality Game Has Arrived - Futurism
Posted in Virtual Reality
Comments Off on The First Mind-Controlled Virtual Reality Game Has Arrived – Futurism
Spending on augmented and virtual reality to soar in coming years – Irish Times
Posted: at 6:10 am
Consumer spending will account for the lions share of AR/VR revenues in all regions this year
Worldwide revenues for the augmented reality (AR) and virtual reality (VR) market are set to jump 100 per cent or more over each of the next four years, according to a new forecast.
Research firm IDC said it expects total spending on such products and services to increase from $11.4 billion this year to nearly $215 billion by 2021, achieving a compound annual growth rate of 113.2 per cent along the way.
The US will lead the way with total spending of $3.2 billion this year, followed by Asia-Pacific (excluding Japan) on $3.2 billion. Spending on AR and VR in western Europe is forecast to hit $2 billion in 2017.
The region that will experience the fastest revenue growth over the 2016-2021 forecast period is Canada at 145.2 per cent compound annual growth rate. It is followed by central and eastern Europe, western Europe and the US.
Consumer spending will account for the lions share of such revenues in all regions this year.
The consumer, retail, and manufacturing segments will be the early leaders in AR and VR investment and adoption. However, as we see in the regions, other segments like government, transportation, and education will utilise the transformative capabilities of these technologies, said Marcus Torchia, research director of IDC customer insights and analysis.
With use cases that span both AR and VR environments, we see a significant opportunity for companies to recast how users interact in business processes and everyday tasks, he added.
IDC said the largest industry use cases this year will be retail showcasing ($442 million), on-site assembly and safety ($362 million), and process manufacturing training ($309 million). By the end of 2021, however, the largest industry use cases in terms will be industrial maintenance ($5.2 billion) and public infrastructure maintenance ($3.6 billion), followed by retail showcasing ($3.2 billion).
The consumer segment will be dominated by AR and VR games throughout the forecast, with total spending reaching $9.5 billion in 2021.
More here:
Spending on augmented and virtual reality to soar in coming years - Irish Times
Posted in Virtual Reality
Comments Off on Spending on augmented and virtual reality to soar in coming years – Irish Times







