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Reliable ${H}_{infty}$ Fuzzy Control for a Class of Discrete-Time Nonlinear Systems Using Multiple Fuzzy Lyapunov Functions

机译:一类使用多个模糊Lyapunov函数的离散非线性系统的可靠$ {H} _ {infty} $模糊控制

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This brief deals with the problem of reliable Hinfin fuzzy control for a class of discrete-time nonlinear systems with actuator faults by using multiple fuzzy Lyapunov functions. The Takagi and Sugeno fuzzy model is employed to represent a nonlinear system. A sufficient condition for the existence of reliable Hinfin fuzzy controllers is given in terms of linear matrix inequalities (LMIs), which can guarantee that the closed-loop fuzzy system is globally asymptotically stable and satisfies different levels of disturbance attenuation for different operating regimes. Furthermore, a suboptimal reliable fuzzy controller is proposed for minimizing the normal level while maintaining acceptable levels in the faulty cases. Finally, it is also demonstrated, through numerical simulations on a discrete-time chaotic system, that the proposed method is effective
机译:本摘要通过使用多个模糊Lyapunov函数处理一类具有执行器故障的离散时间非线性系统的可靠Hinfin模糊控制问题。 Takagi和Sugeno模糊模型用于表示非线性系统。线性矩阵不等式(LMI)给出了可靠的Hinfin模糊控制器存在的充分条件,它可以确保闭环模糊系统全局渐近稳定,并针对不同的运行方式满足不同级别的干扰衰减。此外,提出了次优的可靠模糊控制器,用于在故障情况下将正常水平降至最低,同时保持可接受水平。最后,还通过离散时间混沌系统的数值模拟证明了该方法是有效的。

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