A load frequency control design using the sliding mode control theory with a VSS observer

H. Kondo, Yuya Suzuki, S. Iwamoto
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引用次数: 6

Abstract

In recent years, power systems have steadily grown larger and more complicated. Meanwhile, there has been a push toward strong deregulation of the power industry, which has also progressed, causing increases in the PPS (Power Producers and Suppliers) generation ratio and power wheeling via the tie-lines connecting different power companies. These factors all contribute to the increase of uncertainties in the power system. The Sliding mode control theory is one type of robust control theories, which can consider modeling uncertainties. Therefore, in this paper, the Sliding mode control theory is applied to the Load Frequency Control (LFC) in power systems, together with a VSS observer. Its robustness and control performances of the proposed method are examined by numerical simulations and comparisons with the conventional PI controller.
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采用滑模控制理论设计了带VSS观测器的负载频率控制
近年来,电力系统逐渐变得越来越大,越来越复杂。与此同时,通过连接各电力公司的配电网,PPS (power Producers and Suppliers)的发电比率和电力转轮也在不断增加,因此,对电力行业的强力管制也在不断推进。这些因素都增加了电力系统的不确定性。滑模控制理论是一类可以考虑建模不确定性的鲁棒控制理论。因此,本文将滑模控制理论与VSS观测器一起应用于电力系统的负载频率控制。通过数值仿真和与传统PI控制器的比较,验证了该方法的鲁棒性和控制性能。
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