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Multiobjective Fault-Tolerant Control for Fuzzy Switched Systems With Persistent Dwell Time and Its Application in Electric Circuits

机译:具有持久停留时间的模糊开关系统的多目标容错控制及其在电路中的应用

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This article concentrates on the output feedback controller design problem for discrete-time nonlinear switched systems with actuator faults. The Takagi-Sugeno fuzzy model is adopted to approximate the nonlinearity of the plant with a set of local linear models. The persistent dwell-time (DT) switching law, which is more general than DT or average DT switching, is introduced to govern the switching among subsystems. In order to alleviate the effects of actuator failures on system stability and performance, a synthesized fault-tolerant output feedback controller ensuring various performance requirements is designed. Intensive attention is focused on establishing sufficient conditions, which can guarantee the exponential mean-square stability as well as the prescribed extended dissipativity property of the closed-loop system. By virtue of the Lyapunov stability theory and appropriate matrix transformation methods, the desired controller gains can be obtained by solving a convex optimization problem. The developed method is finally applied to address the control issue of a tunnel diode circuit system model to illustrate its efficiency and applicability.
机译:本文专注于具有执行器故障的离散时间非线性开关系统的输出反馈控制器设计问题。采用Takagi-Sugeno模糊模型用一组局部线性模型近似植物的非线性。引入了比DT或平均DT切换更广泛的持久停留时间(DT)切换法,以控制子系统之间的切换。为了缓解执行器故障对系统稳定性和性能的影响,设计了一种可靠的合成容错输出反馈控制器,确保各种性能要求。强化关注专注于建立足够的条件,这可以保证指数均方稳定性以及闭环系统的规定的扩展耗散性能。借助于Lyapunov稳定性理论和适当的矩阵变换方法,可以通过解决凸优化问题来获得所需的控制器增益。最终应用开发的方法来解决隧道二极管电路系统模型的控制问题,以说明其效率和适用性。

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