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Decentralized Adaptive Fuzzy Output-Feedback Control of Switched Large-Scale Nonlinear Systems

机译:切换非线性系统的分散自适应模糊输出反馈控制

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In this paper, a decentralized adaptive fuzzy output-feedback control problem is discussed for a class of switched large-scale nonlinear systems without the measurements of the system states. Fuzzy logic systems are used to approximate the unknown nonlinear functions, and a switched observer is designed to avoid the conservativeness caused by adoption of a common observer for all subsystems. A common coordinate transformation of all subsystems is constructed to get rid of individual coordinate transformations for subsystems that are required when applying the backstepping recursive design scheme. Meanwhile, since the exponential decline property of Lyapunov functions for individual subsystems is no longer satisfied in this paper, the classical average dwell time method cannot be directly applied. Based on this, a switched observer-based decentralized adaptive fuzzy output-feedback control technique is set up by exploiting the average dwell time method and backstepping. It is proved that all the signals of the resulting closed-loop system are semiglobally uniformly ultimately bounded under a class of switching signals with average dwell time, while the tracking errors converge to a small neighborhood of the origin. The effectiveness of the proposed control scheme is illustrated by its applications to a two-inverted-pendulum system and a quadruple-tank process system.
机译:本文针对一类不具有系统状态量度的切换大型非线性系统,讨论了一种分散的自适应模糊输出-反馈控制问题。使用模糊逻辑系统来近似未知的非线性函数,并设计了切换式观察器,以避免所有子系统采用通用观察器引起的保守性。构建所有子系统的公共坐标转换,以消除应用后推递归设计方案时所需的子系统的单独坐标转换。同时,由于本文不再满足各个子系统的Lyapunov函数的指数下降性质,因此经典平均停留时间方法无法直接应用。在此基础上,利用平均停留时间法和反推法,建立了基于观测器的分散式自适应模糊输出-反馈控制技术。事实证明,所产生的闭环系统的所有信号最终均以半全局均匀地限制在一类具有平均停留时间的开关信号下,而跟踪误差则收敛到原点的一个小邻域。所提出的控制方案的有效性通过其在两个倒立摆系统和一个四罐处理系统中的应用来说明。

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