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首页> 外文期刊>European Journal of Control >Observer-based state-feedback control design for LPV periodic discrete-time systems
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Observer-based state-feedback control design for LPV periodic discrete-time systems

机译:LPV周期离散时间系统基于观测器的状态反馈控制设计

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This paper proposes new linear matrix inequality conditions to the observer-based control design problem for Linear Parameter Varying (LPV) periodic discrete-time systems. The time-varying parameters are considered to be available online (measured or estimated). In this way, periodic gain scheduling observers and controllers can be designed. Less conservative results in terms of the H-infinity performance can be obtained if the variation rates of the parameters are known, otherwise arbitrarily fast variation can be considered. The H-infinity guaranteed cost from the disturbance input to the error signal has been used for the observer design, and the state feedback control design considers the minimization of the H-infinity bound from both error signal and input noise to the output of the controlled system. In this way, the designed controller provides robustness against inaccurate estimation. The analysis of the augmented system composed by the observer and controller is performed and numerical experiments illustrate the efficacy of the proposed method. (C) 2019 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:本文针对线性变量(LPV)周期离散时间系统的基于观测器的控制设计问题提出了新的线性矩阵不等式条件。随时间变化的参数被认为可在线获得(测量或估计)。以这种方式,可以设计周期性的增益调度观测器和控制器。如果已知参数的变化率,则在H无限性能方面可获得较保守的结果,否则可以考虑任意快速变化。从干扰输入到误差信号的H无限保证成本已用于观察器设计,并且状态反馈控制设计考虑了从误差信号和输入噪声到受控输出的H无限边界的最小化。系统。这样,设计的控制器可提供针对不准确估计的鲁棒性。对由观察者和控制器组成的增强系统进行了分析,数值实验表明了该方法的有效性。 (C)2019欧洲控制协会。由Elsevier Ltd.出版。保留所有权利。

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