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#1
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In his lab at Penn, Vijay Kumar and his team build flying quadrotors,
small, agile robots that swarm, sense each other, and form ad hoc teams -- for construction, surveying disasters and far more. If these things can keep from running into each other, why is it so hard to design and implement a system to keep sailplanes apart? http://www.youtube.com/watch?v=cfR6t...otation_459294 Boggs |
#2
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On Mar 5, 11:39*am, GARY BOGGS wrote:
In his lab at Penn, Vijay Kumar and his team build flying quadrotors, small, agile robots that swarm, sense each other, and form ad hoc teams -- for construction, surveying disasters and far more. If these things can keep from running into each other, why is it so hard to design and implement a system to keep sailplanes apart? http://www.youtube.com/watch?v=cfR6t...nnotation_id=a... Boggs The jellyware in the cockpit. |
#3
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On Mar 5, 2:46*pm, Grider Pirate wrote:
If these things can keep from running into each other, why is it so hard to design and implement a system to keep sailplanes apart? Avoid gaggles? |
#4
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On Mar 5, 11:39*am, GARY BOGGS wrote:
In his lab at Penn, Vijay Kumar and his team build flying quadrotors, small, agile robots that swarm, sense each other, and form ad hoc teams -- for construction, surveying disasters and far more. If these things can keep from running into each other, why is it so hard to design and implement a system to keep sailplanes apart? http://www.youtube.com/watch?v=cfR6t...nnotation_id=a... Boggs It's all preprogrammed moves, all worked out on a computer before the flight profile is uploaded to each unit. They are all synced to the same clock. T |
#5
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Really? I thought they were sensing each other in some way?
Boggs |
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