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On the Use of the Smith-McMillan Form in Decoupling System Dynamics

机译:关于史密斯麦仑形式在解耦系统动力学中的使用

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In this paper, the use of the Smith-McMillan form in decoupling multiple-input multiple-output system dynamics is analyzed. In short, from a transfer matrix plant model one can obtain a decoupling compensator which leads to a decoupled plant that contains the same transmission poles and zeros of the transfer matrix of the original system. As a result, full decoupling of the plant transfer matrix is obtained for all frequencies, which can be individually addressed by single-input single-output control. The aim of this paper is to present conditions for the decoupled system that guarantee internal stability and performance requirements for the overall control system. Performance specifications are defined in terms of magnitude limits for the maximum singular value of the closed-loop transfer matrices. The potential of the decoupling procedure is shown in a simulation study of a mechanical system.
机译:在本文中,分析了史密斯-CMMillan形式在解耦多输入多输出系统动态的情况下的使用。 简而言之,来自转移矩阵工厂模型可以获得去耦补偿器,该分离补偿器导致散向设备,该装置包含原始系统的传输矩阵的相同传输极和零。 结果,为所有频率获得植物传输矩阵的完全去耦,所有频率都可以通过单输入单输出控制单独寻址。 本文的目的是对解耦系统呈现条件,以保证对整个控制系统的内部稳定性和性能要求。 在闭环传输矩阵的最大奇异值的幅度范围内定义性能规范。 解耦程序的电位显示在机械系统的模拟研究中。

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