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Distributed fault-tolerant control design for spacecraft finite-time attitude synchronization

机译:航天器有限时间姿态同步的分布式容错控制设计

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摘要

This paper develops two distributed finite-time fault-tolerant control algorithms for attitude synchronization of multiple spacecraft with a dynamic virtual leader in the presence of modeling uncertainties, external disturbances, and actuator faults. The leader gives commands only to a subset of the followers, and the communication flow between followers is directed. By employing a novel distributed nonsingular fast terminal sliding mode and adaptive mechanism, a distributed finite-time fault-tolerant control law is proposed to guarantee all the follower spacecraft that finite-time track a dynamic virtual leader. Then utilizing three distributed finite-time sliding mode estimators, an estimator-based distributed finite-time fault-tolerant control law is proposed using only the followers' estimates of the virtual leader. Both of them do not require online identification of the actuator faults and provide robustness, finite-time convergence, fault-tolerant, disturbance rejection, and high control precision. Finally, numerical simulations are presented to evaluate the theoretical results. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本文针对存在模型不确定性,外部干扰和执行器故障的情况,开发了两种分布式有限时间容错控制算法,用于具有动态虚拟前导的多太空船姿态同步。领导者仅向跟随者的子集发出命令,并且跟随者之间的通信流被引导。通过采用一种新型的分布式非奇异快速终端滑模和自适应机制,提出了一种分布式有限时间容错控制律,以保证所有随动航天器能够有限时间地跟踪动态虚拟领导者。然后利用三个分布式有限时间滑模估计器,仅使用虚拟领导者的跟随者估计,提出了一种基于估计器的分布式有限时间容错控制律。它们都不需要在线识别执行器故障,并且提供了鲁棒性,有限时间收敛,容错,抗扰性和高控制精度。最后,通过数值模拟来评估理论结果。版权所有(c)2015 John Wiley&Sons,Ltd.

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