Research on robust connective stabilization for a class of large scale systems with arbitrary expanding construction

Li Xiaohua, Tong Xin
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引用次数: 1

Abstract

The robust connective stabilization problem for a class of interconnected large scale systems with arbitrary expanding construction, in which the new subsystems with arbitrary dimension are added, is studied in this paper. This problem is how to design the local decentralized control law of the new arbitrary subsystem based on not changing the decentralized control laws of original construction, so that both the subsystem and the resultant expanded system are connective stable. In the past literature, the research results are only aimed at the subsystems with same dimension. Further, the expansion problem for the subsystem with different dimensions is solved in this paper. The dispose method about different dimensions is given. The sufficient condition of the robust connective stabilization for the expanding construction of the systems is obtained by taking Lyapunov theory and LMI approach. The design Method of the robust decentralized connective stabilization controller of the expanding construction is given. The control simulation results for a class of power system modol with expanding construction show the effectiveness of presented method.
一类具有任意扩展结构的大系统的鲁棒连接镇定研究
研究了一类具有任意扩展结构的互联大系统的鲁棒连接镇定问题,该系统中加入了任意维的新子系统。问题是如何在不改变原结构分散控制律的基础上,设计新的任意子系统的局部分散控制律,使子系统和扩展后的系统都是连接稳定的。在以往的文献中,研究结果仅针对同一维数的子系统。此外,本文还解决了不同维数子系统的扩展问题。给出了不同尺寸的处理方法。利用李雅普诺夫理论和LMI方法,得到了系统扩展构造的鲁棒连接镇定的充分条件。给出了扩展结构鲁棒分散连接镇定控制器的设计方法。对一类具有扩展结构的电力系统模型的控制仿真结果表明了该方法的有效性。
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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