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Gain-scheduled control of time-varying delay systems with input constraint

机译:增益计划控制时变延迟系统的输入约束

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This paper investigates gain-scheduled control design for linear systems with time-varying state delays subject to actuator saturation and external disturbance. Assuming the disturbance is peak bounded, a sufficient delay-dependent condition is established to guarantee that a family of level sets, corresponding to a novel parameter-dependent Lyapunov-Krasovskii functional, are nested and invariant to the closed-loop system. The invariant sets are then used to obtain nested reachable sets (ellipsoids) to bound the closed-loop states. A family of continuous controllers are designed based on these nested ellipsoids. The controller with the best performance is selected, each time, based on the closed-loop state vector, while complying with the saturation bound, and the resulting closed-loop system is locally input-to-state stable. All conditions are represented in the form of linear matrix inequalities (LMIs) by the linear spline method. Finally, the benefit of the control method is illustrated by two examples.
机译:本文调查了具有时变状态延迟的线性系统的增益调度控制设计,该延迟受执行器饱和和外部干扰。假设干扰是峰值的峰值,建立了足够的延迟依赖条件,以保证对应于新的参数依赖的Lyapunov-krasovskii功能的级别集合,是嵌套和不变的闭环系统。然后使用不变集来获取嵌套可达到的集合(椭圆体)以绑定闭环状态。基于这些嵌套的椭圆体设计了一系列连续控制器。每次基于闭环状态向量时选择具有最佳性能的控制器,同时遵守饱和度绑定,并且所产生的闭环系统是本地输入到状态的稳定性。所有条件都以线性样条法以线性矩阵不等式(LMI)的形式表示。最后,通过两个示例说明了控制方法的益处。

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