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Decentralized output-feedback control of triangular large-scale nonlinear impulsive systems with time-varying delays: a gain scaling approach

机译:具有时变时延的三角形大规模非线性脉冲系统的分散输出反馈控制:一种增益缩放方法

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摘要

In this study, we investigate the decentralized output-feedback control problem for a class of triangular large-scale nonlinear impulsive systems (TLSNISs) with time-varying delays. Unlike existing design approaches in impulsive systems, a gain scaling approach is proposed for the first time to counteract the structural uncertainties of interconnected nonlinearities. Specifically, by fully exploiting the static gain, novel delay-independent impulsive observers are delicately constructed to estimate the unavailable states. Furthermore, the undesirable effects of time-varying delays and impulsive disturbances are eliminated using the comparison principle and average impulsive interval technique. The designed gain-scaling-based decentralized output-feedback controllers have concise linear-like forms and are independent of time delays. Moreover, by strengthening the gain scaling mechanism, we further develop an improved control scheme that endows the controllers with the capability to tolerate unknown external disturbances, thus improving its robustness. It is shown that the system states converge exponentially to the origin in the disturbance-free case with the designed controllers (or to an adjustable neighborhood of the origin in the presence of disturbance). Finally, two examples, including an engineering system design example, are provided to demonstrate the effectiveness of the designed controllers for both lower TLSNISs and upper TLSNISs.
机译:在这项研究中,我们研究了一类具有时变时滞的三角形大规模非线性脉冲系统(TLSNISs)的分散输出-反馈控制问题。与现有的脉冲系统设计方法不同,该文首次提出了一种增益缩放方法,以抵消互连非线性的结构不确定性。具体来说,通过充分利用静态增益,巧妙地构建了新的延迟无关的脉冲观测器来估计不可用的状态。此外,利用比较原理和平均脉冲间隔技术消除了时变延迟和脉冲干扰的不良影响。所设计的基于增益调节的分散式输出反馈控制器具有简洁的线性形式,并且与时间延迟无关。此外,通过加强增益缩放机制,进一步开发了一种改进的控制方案,使控制器具有容忍未知外部扰动的能力,从而提高了其鲁棒性。结果表明,在所设计的控制器的无干扰情况下,系统状态呈指数收敛到原点(或者在存在扰动的情况下收敛到原点的可调邻域)。最后,通过两个算例(包括一个工程系统设计示例)来证明所设计的控制器对下层TLSNIS和上层TLSNIS的有效性。

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