带有执行器故障的多输入多输出非线性系统的容饱和规定控制

Hao Lei , Ruihang Ji , Dongyu Li , Shuzhi Sam Ge
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引用次数: 0

摘要

研究一类多输入多输出非线性系统在执行器故障情况下的跟踪控制问题。实现输入饱和和性能约束之间的平衡,而不是进行孤立的分析,特别是在经常遇到未知执行器故障的情况下,成为一个有趣但具有挑战性的问题。首先,为了提高跟踪性能,提出了隧道规定性能(TPP),提供狭窄的隧道形状约束,而不是常见的过于宽松的喇叭形性能约束。然后将辅助系统产生的一对非负信号集成到TPP中,从而产生具有灵活性能边界的耐饱和规定性能(SPP),该性能边界考虑了输入饱和情况。即SPP可以在需要时适当放宽TPP,降低控制设计的保守性。在SPP的帮助下,我们开发的耐饱和规定控制(SPC)保证有限时间收敛,同时满足输入饱和和性能约束,即使在执行器严重故障的情况下也是如此。通过仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Saturation-tolerant prescribed control of MIMO nonlinear systems with actuator faults
This paper addresses the tracking control problem of a class of multiple-input–multiple-output nonlinear systems subject to actuator faults. Achieving a balance between input saturation and performance constraints, rather than conducting isolated analyses, especially in the presence of frequently encountered unknown actuator faults, becomes an interesting yet challenging problem. First, to enhance the tracking performance, Tunnel Prescribed Performance (TPP) is proposed to provide narrow tunnel-shape constraints instead of the common over-relaxed trumpet-shape performance constraints. A pair of non-negative signals produced by an auxiliary system is then integrated into TPP, resulting in Saturation-tolerant Prescribed Performance (SPP) with flexible performance boundaries that account for input saturation situations. Namely, SPP can appropriately relax TPP when needed and decrease the conservatism of control design. With the help of SPP, our developed Saturation-tolerant Prescribed Control (SPC) guarantees finite-time convergence while satisfying both input saturation and performance constraints, even under serious actuator faults. Simulations are conducted to illustrate the effectiveness of the proposed SPC.
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