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Network-Based Output Tracking Control for a Class of T-S Fuzzy Systems That Can Not Be Stabilized by Nondelayed Output Feedback Controllers

机译:一类不可延迟的输出反馈控制器无法稳定的T-S模糊系统的基于网络的输出跟踪控制

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摘要

This paper investigates network-based output tracking control for a T-S fuzzy system that can not be stabilized by a nondelayed fuzzy static output feedback controller, but can be stabilized by a delayed fuzzy static output feedback controller. By intentionally introducing a communication network that produces proper network-induced delays in the feedback control loop, a stable and satisfactory tracking control can be ensured for the T-S fuzzy system. Due to the presence of network-induced delays, the fuzzy system and the fuzzy tracking controller operate in an asynchronous way. Taking the asynchronous operation and network-induced delays into consideration, the network-based tracking control system is modeled as an asynchronous T-S fuzzy system with an interval time-varying delay. A new delay-dependent criterion for -gain tracking performance is derived by using the deviation bounds of asynchronous normalized membership functions and a complete Lyapunov–Krasovskii functional. Applying a particle swarm optimization technique with the feasibility of the derived criterion, a novel design algorithm is presented to determine the minimum -gain tracking performance and control gains simultaneously. The effectiveness of the proposed method is illustrated by performing network-based output tracking control of a Duffing-Van der Pol’s oscillator.
机译:本文研究了基于T-S模糊系统的网络输出跟踪控制,该系统无法通过无延迟模糊静态输出反馈控制器来稳定,但是可以通过延迟模糊静态输出反馈控制器来稳定。通过有意地引入一个在反馈控制回路中产生适当的网络引起的延迟的通信网络,可以确保T-S模糊系统的稳定和令人满意的跟踪控制。由于网络引起的延迟的存在,模糊系统和模糊跟踪控制器以异步方式运行。考虑到异步操作和网络引起的延迟,将基于网络的跟踪控制系统建模为具有间隔时变延迟的异步T-S模糊系统。通过使用异步归一化隶属函数和完整的Lyapunov–Krasovskii函数的偏差边界,得出了一个新的有关增益跟踪性能的时延相关准则。将粒子群优化技术与所推导准则的可行性相结合,提出了一种新颖的设计算法来同时确定最小增益跟踪性能和控制增益。通过对Duffing-Van der Pol振荡器进行基于网络的输出跟踪控制,说明了该方法的有效性。

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