Achieving Complete UAV Delivery in the Presence of Motor Failures

E. Magsino, M. Say, John A. Tan
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引用次数: 9

Abstract

This paper addresses a redundant flight recovery system (RFRS) in unmanned aerial vehicles (UAV) specifically applied for octocopter delivery or courier applications. RFRS implements a state diagram to allow octocopters to be fault-tolerant during motor breakdown or switches to less-energy mode consumption after package delivery. Conventional linear and nonlinear controllers are employed in achieving complete flight and landing stability of the UAV. Empirical experiments have confirmed the feasibility of RFRS being implemented in an octocopter platform.
在电机故障的情况下实现无人机的完整交付
本文研究了一种专门用于八旋翼飞机递送或快递应用的无人机冗余飞行恢复系统(RFRS)。RFRS实现了一个状态图,允许八翼直升机在电机故障期间容错,或者在交付包裹后切换到能耗更低的模式。采用传统的线性和非线性控制器来实现无人机的完全飞行和着陆稳定。实证实验证实了RFRS在某八旋翼平台上实施的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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