An Adaptive Fuzzy Backstepping Controller for Delay Compensation in Networked Control Systems

Mohammad Khademi, I. Izadi, M. Kamali, Farid Sheiholeslam
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Abstract

In this paper, controller design for networked control systems with input delay and output limitations is studied. An auxiliary signal is defined to separate the input delay from system input. Also, barrier Lyapunov functions are utilized to deal with output limitations. The nonlinear functions in the model, which assumed unknown, are another limitation. These unknown nonlinear functions are estimated using fuzzy logic systems. Based on these techniques a controller is designed. Stability analysis proves that all the signals in the closed-loop system are semi-globally uniformly ultimately bounded. Simulation results are provided to support the theory.
一种用于网络控制系统延迟补偿的自适应模糊反步控制器
研究了具有输入延迟和输出限制的网络控制系统的控制器设计问题。定义了一个辅助信号来分离输入延迟和系统输入。此外,利用势垒Lyapunov函数来处理输出限制。模型中的非线性函数假设是未知的,这是另一个限制。利用模糊逻辑系统对这些未知的非线性函数进行估计。在此基础上设计了控制器。稳定性分析证明了闭环系统中的所有信号都是半全局一致最终有界的。仿真结果支持了该理论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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