开关系统理论在电力系统稳定中的应用

Shujian Chen, L. Jiang, W. Yao, Q. Wu
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引用次数: 15

摘要

传统的切换系统一般通过设计切换控制动作来实现子系统之间的切换,以保证系统整体稳定。本文主要研究如何运用交换系统方法分析电力系统的稳定性,特别是故障情况下的电力系统的稳定性。本文首先综述了开关系统稳定性分析和控制设计的最新进展。其次,引入了开关电力系统的模型,定义了由故障引起的不同阶段电力系统的多重李雅普诺夫函数(MLF)。提出了一种基于MLF的临界清算时间求解方法。最后,通过基于单机无限母线(SMIB)电力系统的仿真试验验证了该方法的有效性。本文的研究结果表明,电力系统可以看作是多个切换子系统的集合体,其稳定性可以用MLF进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of switched system theory in power system stability
The conventional switched system generally designs switched control actions to switch between different subsystems to make sure a stable global system. In this paper, the author focuses on how to apply switched system methodologies to analyze stability of power systems, especial for power systems under faults. The recent development in stability analysis and control design of switched systems is surveyed at first. Secondly, the model of a switched power system is introduced, and multiple Lyapunov functions (MLF) are defined for power systems under different stages caused by faults. A new method depending on MLF is introduced to find the critical clearing time (CCT). Finally, the proposed approach is verified by simulation test based on a single machine infinite bus (SMIB) power system. The result presented in this paper demonstrates that the power system can be regarded as an aggregation of a number of switched subsystems and the corresponding stability can be analyzed by MLF.
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