Dynamic measurement output feedback controllers for exact model matching and disturbance rejection of general linear neutral time delay systems

F. Koumboulis, N. Kouvakas, P. Paraskevopoulos
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引用次数: 3

Abstract

The control design problem of exact model matching with simultaneous disturbance rejection (EMMDR) for left invertible general neutral multi-delay systems is solved via a dynamic realizable controller using the measurable disturbances and feeding back the measurement outputs of the system. The dynamic part of the controller connecting the measurement outputs and external commands to the inputs is considered to be realizable and proper while the dynamic part of the controller connecting the measurable disturbances to the inputs is considered to be realizable. For the controller to be implementable the transfer matrix mapping the control inputs to the measurable outputs is considered to be realizable. For this controller and open loop plant the necessary and sufficient conditions for the solvability of the EMMDR problem are resolved and the general analytical expression of the controller matrices solving the problem is presented.
用于一般线性中性时滞系统精确模型匹配和抗扰的动态测量输出反馈控制器
采用动态可实现控制器,利用可测扰动反馈系统的测量输出,解决了左可逆一般中性多时滞系统精确模型匹配与同时抗扰的控制设计问题。将测量输出和外部命令连接到输入的控制器的动态部分被认为是可实现的和适当的,而将可测量的扰动连接到输入的控制器的动态部分被认为是可实现的。为了使控制器可实现,将控制输入映射到可测量输出的传递矩阵被认为是可实现的。针对该控制器和开环对象,给出了EMMDR问题可解的充分必要条件,并给出了求解该问题的控制器矩阵的一般解析表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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