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When employees asked whether Foundation would weaponize its robot, cofounder Mike LeBlanc responded: Are you a vegetarian? âIf you are a m
The year-old robotics firm Foundation thinks its competitors are alarmingly pacifist, leaving money and American exceptionalism on the table.
So far, many humanoid companies have forgone military contracts. Humanoid startup Figure AI, reportedly in talks to raise $1.5 billion, published a âmaster planâ in 2022 in which it swore it would not âplace humanoids in military or defense applications.â And when Tesla needed parts from China for its Optimus humanoids, Elon Musk had to assure the Chinese government that the components would not be used âfor military purposes.âÂ
Foundation is taking the opposite tack. LeBlanc said the company has already inked $10 million in defense contracts, including with the U.S. Air Force to use its robots for refueling and maintenance. The company is preparing to ramp up production, deciding between three states to build a factory, including in Ohio â which has thrown incentives at startups that set up shop in the state.Â
If Foundation has a say in the matter, the era of a humanoid-filled military is upon us. âItâs an absolute dereliction of duty not to have your robots be willing to fight for America,â LeBlanc said.
Imagine a world where machines donât just understand your wordsâthey sense your emotions, intentions, and unspoken desires. đ¤đ This isnât ..
Underwater Climate Refuges: Designing Technological Sanctuaries to Protect Marine Biodiversity from Warming
As our oceans face unprecedented warming due to climate change, the urgency to protect marine biodiversity has reached a critical point. With ecosystems and species at risk, innovative solutions are emerging to preserve our oceansâ richness for future generations. Among these transformative ideas are underwater climate refugesâcutting-edge technological sanctuaries designed to shield marine lifeâŚ
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Fruit flies could hold the key to building resiliency in autonomous robots - Technology Org
New Post has been published on https://thedigitalinsider.com/fruit-flies-could-hold-the-key-to-building-resiliency-in-autonomous-robots-technology-org/
Fruit flies could hold the key to building resiliency in autonomous robots - Technology Org
Mechanical Engineering Assistant Professor Floris van Breugel has been awarded a $2 million National Science Foundation (NSF) grant to adapt autonomous robots to be as resilient as fruit flies.
Resiliency in autonomous robotic systems is crucial, especially for robotics systems used in disaster response and surveillance, such as drones monitoring wildfires. Unfortunately, modern robots have difficulty responding to new environments or damage to their bodies that might occur during disaster response, van Breugel wrote in his grant application. In contrast, living systems are remarkably adept at quickly adjusting their behavior to new situations thanks to redundancy and flexibility within their sensory and muscle control systems.
Scientific discoveries in fruit flies have helped shed light on how these insects achieve resiliency in flight, according to van Breugel. His project will translate that emerging knowledge on insect neuroscience to develop more resilient robotic systems.
âThis is a highly competitive award on a topic with tremendous potential impact, which also speaks of the research excellence of the investigator and Mechanical Engineering at UNR,â Petros Voulgaris, Mechanical Engineering department chair, said.
This research aligns with the College of Engineeringâs Unmanned Vehicles research pillar.
Engineering + flies
The intersection of engineering and flies long has been an interest to van Breugel.
âAs an undergrad, I did research where my main project was designing a flying, hovering thing that birds or insects vaguely inspired,â he said. âThroughout that project, I realized that the hard part, which was more interesting to me, is once you have this mechanical thing that can fly, how do you control it? How do you make it go where you want it to go? If it gets broken, how do you adapt to that?â
Van Breugel says he is examining how âanimals can repurpose or reprogram their sensorimotor systems âon the flyâ to compensate for internal damage or external perturbations quickly.â
Working with van Breugel on the grant are experts in insect neuroscience, including Michael Dickinson, professor of bioengineering and aeronautics at the California Institute of Technology (and van Breugelâs Ph.D. advisor) as well as Yvette Fisher, assistant professor of neurobiology at U.C. Berkeley. Both have pioneered aspects of brain imaging in flies in regards to the discoveries and technology in the field that van Breugel is utilizing in this research project. Also on the project: Bing Bruton, associate professor of biology at the University of Washington, who brings her expertise in computational neuroscience.
The importance of flies in the realm of both engineering and neuroscience stems from the combination of their sophisticated behavior together with brains that are numerically simple enough that they can be studied in detail. This âgoldilocksâ combination, van Bruegel said, makes it feasible to distill properties of their neural processing into fundamental engineering principles that can be applied to robotics systems.Â
As part of the grant, research experiences will be offered to middle school, high school and undergraduate students to participate in both neuroscience and robotics research. Van Breugel and his team also will develop open-source content to help bring neuroscience fluency to engineering students. This aligns with the College of Engineeringâs Student Engagement operational pillar.
Source: University of Nevada, Reno
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DAYTONER / Daniel Hahn | MINDBENDER
âDr. Grey Walter was a neurologist, robotics pioneer, and a bit of a mad scientist. Living in Bristol, England in 1949, without the aid of modern day computer processors, he built reactive, autonomous robots that could wander about and avoid obstacles. Each robot had two simulated neurons, sufficient for them to display complex behavior. Significantly, Walter's tortoises represent the first real world demonstration of artificial life.â
Can I just say how much I loved the Bumblebee movie?? It was so freaking good!!! And seriously...Charlie Watson? 100000% better then Sam Witwicky!!!