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Finite-frequency H_∞ control design for T-S fuzzy systems with state/input delay and physical constraints

机译:具有状态/输入延迟和物理约束的T-S模糊系统的有限频率H_∞控制设计

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This paper addresses the finite-frequency H-infinity control design problem for T-S fuzzy systems with state or input time-delay. Due to existing physical limitations in the real-world applications, some physical hard constraints are taken into account in the controller design. Based on the limited frequency range of disturbance and generalized Kalman-Yakubovich-Popov (gKYP) lemma, some controller design conditions are presented in terms of linear matrix inequalities (LMIs) to guarantee the asymptotic stability of the closed-loop system with a prescribed finite-frequency H-infinity performance. These conditions, which can be easily solved with standard routines, are provided for T-S fuzzy systems with state or input delay. Finally, three practical examples are investigated to illustrate the effectiveness of the proposed method.
机译:本文针对具有状态或输入时滞的T-S模糊系统的有限频率H-∞控制设计问题。由于实际应用中存在的物理限制,因此在控制器设计中考虑了一些物理上的硬约束。基于有限的扰动频率范围和广义Kalman-Yakubovich-Popov(gKYP)引理,根据线性矩阵不等式(LMI)提出了一些控制器设计条件,以确保闭环系统在规定的有限度下的渐近稳定性。频率H无穷大性能。对于具有状态或输入延迟的T-S模糊系统,可以使用标准例程轻松解决这些条件。最后,研究了三个实例,以说明该方法的有效性。

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