A new AI control system lets MIT’s tiny flying robot move with insect-like agility, boosting its speed by about 450 percent and allowing it to pull off 10 somersaults in 11 seconds. The technology could eventually enable miniature robots to search earthquake rubble and navigate dangerous spaces that conventional drones cannot reach. MIT’s tiny flying robot gets 450% faster with AI.
MIT’s tiny flying robot gets 450% faster with AI Science News from research organizations MIT’s tiny flying robot gets 450% faster with AI MIT’s tiny AI-powered flying robot can now move almost like an insect, performing rapid turns and 10 flips in just 11 seconds. Right: Chen’s group has been building robotic insects for more than five years. Because of their small size, these robotic insects could potentially move through narrow spaces that larger drones cannot enter while avoiding walls, debris, and falling objects.
Until recently, however, aerial microrobots have been far less nimble than the insects that inspired them. They typically moved slowly and followed relatively simple flight paths. Researchers at MIT have now demonstrated a new approach that gives an insect-scale flying robot much greater speed and agility.
The team developed an AI-based controller that allows the robotic bug to perform demanding aerial maneuvers, including repeated body flips.
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