Experiments in Fast, Autonomous, GPS-Denied Quadrotor Flight

June 19, 2018 Β· Declared Dead Β· πŸ› IEEE International Conference on Robotics and Automation

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Authors Kartik Mohta, Ke Sun, Sikang Liu, Michael Watterson, Bernd Pfrommer, James Svacha, Yash Mulgaonkar, Camillo Jose Taylor, Vijay Kumar arXiv ID 1806.07053 Category cs.RO: Robotics Citations 52 Venue IEEE International Conference on Robotics and Automation Last Checked 5 months ago
Abstract
High speed navigation through unknown environments is a challenging problem in robotics. It requires fast computation and tight integration of all the subsystems on the robot such that the latency in the perception-action loop is as small as possible. Aerial robots add a limitation of payload capacity, which restricts the amount of computation that can be carried onboard. This requires efficient algorithms for each component in the navigation system. In this paper, we describe our quadrotor system which is able to smoothly navigate through mixed indoor and outdoor environments and is able to fly at speeds of more than 18 m/s. We provide an overview of our system and details about the specific component technologies that enable the high speed navigation capability of our platform. We demonstrate the robustness of our system through high speed autonomous flights and navigation through a variety of obstacle rich environments.
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