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Adaptive Failure-Tolerant Control for Spacecraft Attitude Tracking

机译:航天器姿态跟踪的自适应容错控制

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An intelligent failure-tolerant approach is proposed for attitude tracking control of a rigid spacecraft. To deal with the integrated troublesome of model uncertainties, external disturbances and subsystem faults and failures, ideas from artificial intelligence are used for integrating and parameterizing the system model. Furthermore, the adaptive control technique is employed to estimate the unique design parameter extracting from the reconstructed model under bounded disturbances. With the help of Lyapunov theory, we show that the proposed method guarantees the failure-tolerance capability of the closed-loop systems. Finally, the feasibility of the proposed method is illustrated through numerical examples.
机译:提出了一种智能容错方法,用于刚性航天器的姿态跟踪控制。为了处理模型不确定性,外部干扰以及子系统故障和故障的综合麻烦,使用人工智能的思想对系统模型进行集成和参数化。此外,采用自适应控制技术来估计在有界干扰下从重构模型中提取的唯一设计参数。借助李雅普诺夫理论,证明了所提方法可以保证闭环系统的容错能力。最后,通过数值算例说明了该方法的可行性。

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