Decentralized control of power systems via robust control of uncertain Markov jump parameter systems

V. Ugrinovskii, H. Pota
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引用次数: 171

Abstract

This paper considers the problem of decentralized control of interconnected power systems under large changes in real and reactive loads that cause large structural changes in the system model. In addition to this, small changes in load are regulated by small disturbance controllers whose gains are adjusted for variations in power system model due to large changes in. loads. In this paper small disturbance perturbations are handled using decentralised control. The only feedback needed by subsystem controllers is the state of the subsystem itself. The design is carried out within a large-scale Markov jump parameter systems framework. Using an integral quadratic constraints description for system interconnections and disturbances, we obtain necessary and sufficient conditions for the existence of a decentralized controller which stabilizes the overall system and guarantees its optimal robust performance.
基于不确定马尔可夫跳变系统鲁棒控制的电力系统分散控制
本文研究了在实际负荷和无功负荷发生较大变化,导致系统模型发生较大结构变化的情况下,互联电力系统的分散控制问题。除此之外,负荷的微小变化由小干扰控制器调节,小干扰控制器的增益根据电力系统模型的变化进行调整。负载。本文采用分散控制方法处理小扰动摄动。子系统控制器需要的唯一反馈是子系统本身的状态。该设计是在一个大型马尔可夫跳变参数系统框架内进行的。利用系统互连和扰动的积分二次约束描述,得到了分散控制器存在的充分必要条件,该分散控制器使整个系统稳定并保证其最优鲁棒性能。
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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