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ROBO SPACE
Robot rodeo: Remote-control bomb squads compete at Sandia labs
by Brooks Hays
Albuquerque (UPI) May 14, 2015


disclaimer: image is for illustration purposes only

Both civilian and military bomb squad teams gathered with their robot companions in New Mexico this week to compete in the Western National Robot Rodeo and Capability Exercise at Sandia National Laboratories.

The five-day event, which began Monday, sees teams attempting to defuse perilous situations with the assistance of remote-controlled robots. The competition is real but friendly, just as much about practice as it as about winning. It's a chance to replicate emergency scenarios without the stakes of real life.

"Our underlying goal is that we want to make good robot operators into great robot operators," Jake Deuel, a competition coordinator at Sandia, said in a press release. "We design problems and scenarios that take our state and local bomb squad teams way outside their comfort zones, outside the known techniques and procedures to see how they can handle it."

For the first time since the rodeo began, the competition featured unmanned aerial vehicles (UAVs), or drones -- a technology that David Novick, a pilot and robotics engineer at Sandia, says is a game-changer.

"It's a stable, highly intelligent vehicle with controls similar to an airplane," Novick said. "Emergency responders can use these small, portable vehicles to get a bird's-eye view of a situation to help them get out of a tight spot."

Scenarios change each year, and competition organizers take pride in increasing the level of complexity each spring. They say the challenge keeps the teams coming back.

In the past, teams have been tasked with disarming airplane bombs, disabling suicide bombers, navigating smoke-filled buildings, rescuing first responders and more.

As Carlos Gallegos, a police sergeant in Albuquerque, put it: "The only time we get to simulate the level of complexity that we face in real life is at the Robot Rodeo."


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ROBO SPACE
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For decades, robots have advanced the efficiency of human activity. Typically, however, robots are formed from bulky, stiff materials and require connections to external power sources; these features limit their dexterity and mobility. But what if a new material would allow for development of a "soft robot" that could reconfigure its own shape and move using its own internally generated power? ... read more


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