This book presents the astonishing potential of deep sensorimotor policies for agile vision-based quadrotor flight. Quadrotors are among the most agile and dynamic machines ever created. However, developing fully autonomous quadrotors that can approach or even outperform the agility of birds or human drone pilots with only onboard sensing and computing is challenging and still unsolved.
Deep sensorimotor policies, generally trained in simulation, enable autonomous quadrotors to fly faster and more agile than what was possible before. While humans and birds still have the advantage over drones, the author shows the current research gaps and discusses possible future solutions.
This book presents the astonishing potential of deep sensorimotor policies for agile vision-based quadrotor flight. Quadrotors are among the most agile and dynamic machines ever created. However, developing fully autonomous quadrotors that can approach or even outperform the agility of birds or human drone pilots with only onboard sensing and computing is challenging and still unsolved.
Deep sensorimotor policies, generally trained in simulation, enable autonomous quadrotors to fly faster and more agile than what was possible before. While humans and birds still have the advantage over drones, the author shows the current research gaps and discusses possible future solutions.

Agile Autonomy: Learning High-Speed Vision-Based Flight

Agile Autonomy: Learning High-Speed Vision-Based Flight
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Product Details
ISBN-13: | 9783031272882 |
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Publisher: | Springer-Verlag New York, LLC |
Publication date: | 04/24/2023 |
Series: | Springer Tracts in Advanced Robotics , #153 |
Sold by: | Barnes & Noble |
Format: | eBook |
File size: | 25 MB |
Note: | This product may take a few minutes to download. |