A robot sloth will (very slowly) survey endangered species

Most animal-inspired robots are designed to move quickly, but Georgia Tech’s latest is just the opposite. Their newly developed SlothBot is built to study animals, plants and the overall environment below them by moving as little as possible. It inch...

Tiny vibration-powered robots could repair your body from the inside

There are many challenges to developing robots that could operate within your body, not the least of which is finding a power source -- you can't exactly strap a big battery on them. That might not be an issue thanks to Georgia Tech researchers. Th...

Shaun King Denies Claims of Funding Fraud


On Christmas Day, Black Lives Matter activist Shaun King went from celebrating a family holiday to quickly gathering and posting receipts to counter alleged lies posted by the media. And even...

#BlackLivesMatter in Atlanta, Citizens march on why #WeCantBreathe


200 protesters silently lay in the middle of the 17th Street Bridge around Atlantic Station to say #BlackLivesMatter and the lives of black men matter.Over the past several weeks, a variety of...

Flipperbot Robotic Sea Turtle: Teenage Robot Ninja Turtle

Scientists and researchers continue to emulate animals when designing and building robots, since animals know what they are doing. For instance, if you want a robot that can crawl over sand really fast(Just because) you should check out sea turtles. And that’s just what Georgia Tech has done here.

flipperbot turtle robot

Researchers Dan Goldman, Nicole Mazouchova and Paul Umbanhowar designed this robot to scamper across loose sand dunes, inspired by the motion of baby sea turtles. Their hypothesis was that key to the turtle’s surprisingly speedy movement is the way they flex their wrists. To test that theory, they designed FlipperBot.

flipper bot drawing

Their experiments will help them learn how fins and flippers are used as arms and legs, and potentially improve robot mobility. Watch the video or read the paper for an explanation of the tech behind the robot.

[via Geekosystem]

Flipperbot Robotic Sea Turtle: Teenage Robot Ninja Turtle

Scientists and researchers continue to emulate animals when designing and building robots, since animals know what they are doing. For instance, if you want a robot that can crawl over sand really fast(Just because) you should check out sea turtles. And that’s just what Georgia Tech has done here.

flipperbot turtle robot

Researchers Dan Goldman, Nicole Mazouchova and Paul Umbanhowar designed this robot to scamper across loose sand dunes, inspired by the motion of baby sea turtles. Their hypothesis was that key to the turtle’s surprisingly speedy movement is the way they flex their wrists. To test that theory, they designed FlipperBot.

flipper bot drawing

Their experiments will help them learn how fins and flippers are used as arms and legs, and potentially improve robot mobility. Watch the video or read the paper for an explanation of the tech behind the robot.

[via Geekosystem]

Access4Kids input device allows disabled children to control touch-centric tablets (video)

Access4Kids input device enables disabled children to control touchenabled tablets video

The innovation world at large has been crafting ways for handicapped individuals to interact with computers for years on end, but the issue of tablets has created another predicament entirely. How do you enable someone to masterfully control a touch-centric device, when the mere act of touching is a challenge? Ayanna Howard, professor of electrical and computer engineering at Georgia Tech, and graduate student Hae Won Park have created Access4Kids, which is described as a "wireless input device that uses a sensor system to translate physical movements into fine-motor gestures to control a tablet."

In essence, it enables individuals with limited mobility to pinch and swipe, and the group has had success thus far with providing greater accessibility to flagship programs like Facebook and YouTube. Moreover, custom-built apps for therapy and science education are cropping up, with the existing prototype utilizing a trio of force-sensitive resistors that measure pressure and convert it into a signal that instructs the tablet. A child can wear the device around the forearm or place it on the arm of a wheelchair and hit the sensors or swipe across the sensors with his or her fist, providing an entirely new level of interaction for those with cerebral palsy, traumatic brain injury, spina bifida and muscular dystrophy. The goal? Once it's honed, to get it out of the lab and made "into a commercial product." Head on past the break for a video look.

Continue reading Access4Kids input device allows disabled children to control touch-centric tablets (video)

Filed under: , ,

Comments

Source: Georgia Tech

Georgia Tech receives $900,000 grant from Office of Naval Research to develop ‘MacGyver’ robot

Georgia Institute of Technology received $900,000 grant from Office of Naval Research to develop 'Macgyver' robot

Robots come in many flavors. There's the subservient kind, the virtual representative, the odd one with an artistic bent, and even robo-cattle. But, typically, they all hit the same roadblock: they can only do what they are programmed to do. Of course, there are those that posses some AI smarts, too, but Georgia Tech wants to take this to the next level, and build a 'bot that can interact with its environment on the fly. The project hopes to give machines deployed in disaster situations the ability to find objects in their environment for use as tools, such as placing a chair to reach something high, or building bridges from debris. The idea builds on previous work where robots learned to moved objects out of their way, and developing an algorithm that allows them to identify items, and asses its usefulness as a tool. This would be backed up by some programming, to give the droids a basic understanding of rigid body mechanics, and how to construct motion plans. The Office of Navy Research's interest comes from potential future applications, working side-by-side with military personnel out on missions, which along with iRobot 110, forms the early foundations for the cyber army of our childhood imaginations.

Filed under: ,

Georgia Tech receives $900,000 grant from Office of Naval Research to develop 'MacGyver' robot originally appeared on Engadget on Fri, 12 Oct 2012 10:59:00 EDT. Please see our terms for use of feeds.

Permalink GizMag  |  sourceGeorgia Tech  | Email this | Comments

Insert Coin: Shimi iPhone robot is ready to dance its way out of the lab, into your heart

Insert Coin Shimi iPhone robot is ready to dance its way out of the lab, into your heart

As soon as we saw Georgia Tech's Shimi, we wanted to how many sleepless nights we'd have to spend waiting for one to proudly display on our desk. And really that's the whole idea behind the iPhone-enabled dancing robot: bringing some sophisticated robotic concepts to the consumer, in an adorable little package. Now the wall-eyed "first musically intelligent robotic speaker dock" has hit Kickstarter, ready to dance its way into reality. When finished, Shimi will feature six-watt speakers on either side of its face and five motors that allow it to dance and turn its head to the best position for optimal listening. Shimi does the latter via facial recognition software, tracking you around the room. The 'bot can also respond to verbal requests like "look at me," and "play Justin Bieber" (their suggestion, not ours). In the future, its creators will be offering up apps for gaming, telepresence and the like, as well as an SDK for developers.

The Kickstarter page has a decidedly lofty $100,000 goal to hit by October 10th. Pledge $129 or more, and you get a Shimi of your very own. Check out a video of the 'bot and its creators after the break.

Continue reading Insert Coin: Shimi iPhone robot is ready to dance its way out of the lab, into your heart

Filed under:

Insert Coin: Shimi iPhone robot is ready to dance its way out of the lab, into your heart originally appeared on Engadget on Tue, 11 Sep 2012 19:22:00 EDT. Please see our terms for use of feeds.

Permalink   |  sourceKickstarter  | Email this | Comments