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H∞H∞ observer–controller synthesis approach in low frequency for T–S fuzzy systems

机译:H∞H∞观察者控制器合成方法在T-S模糊系统的低频下

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摘要

For the output feedback control problem of continuous-time T-S fuzzy systems with unknown premise variables, an H-infinity observer-controller design method in the low-frequency domain is proposed. First, an observer-controller structure is given, the unknown premise variables are limited by Lipschitz conditions. Then, the system stability conditions are obtained by the negativeness of eigenvalues' real parts. To achieve better control performance of the system in low frequency, the H-infinity index for attenuating the unknown low-frequency disturbance is guaranteed by generalised Kalman-Yakubovich-Popov lemma. Then, the stability and robustness conditions are converted into linear matrix inequality forms, which can be solved directly by a convex optimisation technique. Finally, several simulation examples carried out to show the effectiveness of the proposed method.
机译:对于具有未知前提变量的连续时间T-S模糊系统的输出反馈控制问题,提出了低频域中的H-Infinity观察者控制器设计方法。首先,给出观察者控制器结构,未知的前提变量受到Lipschitz条件的限制。然后,通过特征值的实际部分的消极性获得系统稳定性条件。为了实现低频的系统的更好控制性能,通过广义的卡尔曼 - yakubovich-popov引理保证了用于减弱未知低频干扰的H-Infinity指数。然后,将稳定性和稳健性条件转换为线性矩阵不等式形式,其可以通过凸优化技术直接解决。最后,进行了几个模拟实例以显示所提出的方法的有效性。

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