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Adaptive event-triggered output-feedback controller for uncertain nonlinear systems

机译:用于不确定非线性系统的自适应事件触发的输出反馈控制器

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This paper addresses the event-triggered output-feedback stabilization for a class of uncertain nonlinear systems. Essentially different from the related literature, the systems under investigation allow large uncertainties (whose size is unknown) coupling to unmeasurable states, which requires to integrate a comprehensive output-feedback compensation mechanism into the event-triggered philosophy and would bring substantial challenges to the event-triggered control. To solve the problem, a novel scheme of adaptive event-triggered output-feedback control is established for the systems. Specifically, an adaptive dynamic gain is introduced not only to counteract the large uncertainties but also to cope with the execution/sampling error. Then, an adaptive event-triggered output-feedback controller based on dynamic-gain observer is constructed to guarantee global convergence for the resulting closed-loop system while reducing execution/sampling. Particularly, the event-triggering mechanism involved is delicately designed by fully exploiting the dynamic gain, to enable the negative influence of the gain through the execution error to be counteracted (no matter how large the gain becomes) while precluding infinitely fast execution which violates the implementation of event-triggered controller in practice. Correspondingly, a distinctive analysis pattern is implemented for the closed-loop performance, due to the coupling of the dynamic-gain compensation mechanism and the event-triggering mechanism. Moreover, for more efficient resource saving, we further show the feasibility of adaptive dynamic event-triggering mechanism for the desired stabilization. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文解决了一类不确定非线性系统的事件触发的输出反馈稳定。基本上与相关文献不同,调查的系统允许大量的不确定性(其规模未知)耦合到未估量的国家,这需要将综合产出反馈补偿机制整合到事件触发的哲学中,并将对事件带来大量挑战 - 触发控制。为了解决问题,为系统建立了一种新颖的自适应事件触发输出反馈控制方案。具体地,介绍了自适应动态增益,不仅抵消了大的不确定性,还介绍了对执行/采样误差的应对。然后,构造基于动态增益观测器的自适应事件触发的输出反馈控制器以保证在减少执行/采样的同时保证所得闭环系统的全局收敛。特别地,通过充分利用动态增益,涉及所涉及的事件触发机制,以使增益通过执行错误来抵消(无论增益多大),以便在排除无限快速的执行时,这是违反的在实践中实现事件触发控制器。相应地,由于动态增益补偿机制和事件触发机制的耦合,实现了独特的分析模式以实现闭环性能。此外,对于更高效的资源节省,我们进一步展示了适应性动态事件触发机制的可行性,以实现所需的稳定化。 (c)2020 elestvier有限公司保留所有权利。

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