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A robust delay-dependent guaranteed cost PID multivariable output feedback controller design for time-varying delayed systems: An LMI optimization approach

机译:适用于时变延迟系统的强大延迟依赖性保证成本PID多变量输出反馈控制器设计:LMI优化方法

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This paper deals with the new formulated problem of designing a robust delay-dependent guaranteed optimal cost proportional-integral-derivative (PID) multivariable output feedback controller for linear uncertain time delay systems with nonlinear parameter perturbations using a linear matrix inequalities (LMI) approach. Several less conservative delay-dependent stability conditions are formulated for the time-delay system under consideration in terms of LMIs. Based on an augmented form of Lyapunov-Krasovskii functionals, the free weighting matrices and Wirtinger inequality techniques are employed to obtain improved performance. An optimal guaranteed cost PID controller which minimizes the upper bound of cost function is provided. The main advantage of the proposed approach is to decouple the input and the output gain matrices allowing to synthesize the controller gain matrices through a strict LMI technique. The synthesis conditions are thus formulated in LMI form which avoids the use of any iterative approach to resolve the feasibility problem. Two numerical examples selected from the literature are presented to illustrate the effectiveness of the developed methodology. The numerical results indicate that the proposed method performs efficiently in comparison to the approaches from the existing literature. (c) 2021 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:本文涉及设计强大的延迟依赖性保证最优成本比例积分 - 积分 - 积分 - 积分衍生物(PID)多变量输出反馈控制器的新配方问题,用于使用线性矩阵不等式(LMI)方法具有非线性参数扰动的线性不确定时间延迟系统。在LMIS期间考虑的时延系统配制了几种较少保守的延迟依赖性稳定性条件。基于Lyapunov-Krasovskii功能的增强形式,采用自由加权矩阵和丝网不等式技术来获得改进的性能。提供了一种最佳保证成本PID控制器,可最大限度地减少成本函数的上限。所提出的方法的主要优点是将输入和输出增益矩阵分离,允许通过严格的LMI技术合成控制器增益矩阵。因此,合成条件以LMI形式配制,避免使用任何迭代方法来解决可行性问题。提出了一种从文献中选择的两个数值例子以说明所发育方法的有效性。数值结果表明,与现有文献的方法相比,该方法有效地执行。 (c)2021年欧洲控制协会。 elsevier有限公司出版。保留所有权利。

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