Harvard University’s robotic insect takes its first controlled flight (video)

Harvard University's robotic insect takes its first controlled flight video

There's hardly a shortage of animal inspired robots, but few are as tiny as Harvard's autonomous RoboBee. The robotic insect has been around for a while, but researchers at the Wyss Institute for Biologically Inspired Engineering only recently managed a minor breakthrough: controlled flight. Using new manufacturing and design processes, the team has managed to keep the coin-sized bug aloft by independently manipulating the robot's wings with piezoelectric actuators and a delicate control system.

"This is what I have been trying to do for literally the last 12 years," explains Professor Robert J Wood, Charles River Professor of Engineering and Applied Sciences. "Now that we've got this unique platform, there are dozens of tests that we're starting to do, including more aggressive control maneuvers and landing." There's more to be done, however. The tiny machine still requires a tether for power and control, and researchers are still studying nature to suss out how insects cope with flying through wind and the elements. Eventually, the team hopes to outfit the RoboBee with lightweight batteries, an internal control system and a lighter chassis. For now, however, they're just happy to learned to steer. Check out the insect in action after the break.

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Source: Harvard

AirBurr micro air vehicle can self-right, take off again (video)

AirBurr micro air vehicle can selfright, take off again video

EPFL's been tweaking its eerily floating AirBurr since 2009, and its latest iteration adds four carbon-fiber legs, hopefully ensuring you'll never have to chase after and recover it after a crash. When the seemingly clunky frame crashes, it's that same intentional design that will ensure gravity rolls the device towards its side, allowing the legs to extend out and let the MAV relaunch itself -- even off gravel. Hit up the source link to see how the design has evolved over the years, but before that, see it crash and burn return right after the break.

Continue reading AirBurr micro air vehicle can self-right, take off again (video)

AirBurr micro air vehicle can self-right, take off again (video) originally appeared on Engadget on Fri, 15 Jun 2012 15:32:00 EDT. Please see our terms for use of feeds.

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Laser-toting MAV can find its way in tight spaces, might eventually hunt you down (video)

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A perpetual weakness of MAVs (micro air vehicles) is their frequent need for hand-holding in anything other than a wide-open or very controlled space. If they're not using GPS or motion sensors to find their locations, they can't turn on a dime the way a human pilot would. Adam Bry, Abraham Bachrash and Nicholas Roy from MIT's CSAIL group haven't overcome every problem just yet, but they may have taken combat drones and other pilotless aircraft a big step forward by giving them the tools needed to fly quickly when positioning isn't an option. Uniting a laser rangefinder with an existing 3D map of the environment -- still 'cheating,' but less dependent -- lets the prototype flyer find the distance to nearby obstacles and steer clear even at speeds that would scare any mere mortal MAV. Ideally, future designs that can create their own maps will be completely independent of humans, making us think that MIT's references to "aggressive" autonomous flight are really cues to start hiding under the bed.

Continue reading Laser-toting MAV can find its way in tight spaces, might eventually hunt you down (video)

Laser-toting MAV can find its way in tight spaces, might eventually hunt you down (video) originally appeared on Engadget on Thu, 17 May 2012 06:54:00 EDT. Please see our terms for use of feeds.

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A bird in the hand thanks to a robot that can perch

Bird-like robot shown perching on human hand

Land-bound robots? Been there, done that. Researchers at the University of Illinois at Urbana-Champaign are taking things up a notch with a bird-style bot capable of autonomous flight. By replicating the features that enable birds to make a soft landing -- including the flapping wings that help them change direction -- the researchers developed the first micro aerial vehicle (MAV) capable of swooping down to perch on a human hand. The craft forgoes a vertical tail, which birds also lack, to allow for enough agility to land on a small surface. Articulated wings help the robo-bird complete the maneuver successfully, by first gliding into position and then pitching up and slowing down. Who knew perching was so complicated? Besides just providing a super-nifty party trick for these lucky researchers, the autonomous aircraft could be used in urban surveillance, where a small size would come in handy. Check out the MAV in action, along with the press release, after the break.

Continue reading A bird in the hand thanks to a robot that can perch

A bird in the hand thanks to a robot that can perch originally appeared on Engadget on Wed, 02 May 2012 06:19:00 EDT. Please see our terms for use of feeds.

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