互联电力系统中光伏电站频率调节的最优模型预测控制

Arman Oshnoei, M. Kheradmandi, Siavash Oshnoei
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引用次数: 3

摘要

随着光伏电站在电力系统中的日益发展,光伏电站能够为电力系统的频率调节提供辅助服务。光伏电站通过在最大功率点以下跟踪运行来提供所需的发电储备。本文提出了一种基于模型预测控制(MPC)的光伏电站功率控制方法,有助于实现负荷频率控制(LFC)。在MPC中,控制信号是通过优化成本函数来提供的,成本函数包括工厂模型以及系统的当前和过去信号。由于控制器的成功性能取决于其权值的良好调节,因此通过正弦余弦算法调节控制器的权值以获得最优性能。对三区互联电力系统进行了全面的讨论。通过案例研究证明了所提出方案的有效性,从而得出了相关结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal model predictive control of photovoltaic plants for frequency regulation in an interconnected power system
Due to growing development of photovoltaic (PV) plants in power systems, they are capable to provide ancillary service for frequency regulation. PV plants provide the required reserve of generation through operating below the maximum power point tracking. This paper proposes a model predictive control (MPC)-based approach for power control of PV plants contributing towards load frequency control (LFC). In MPC, the control signals are provided through optimizing a cost function which includes the plant model as well as current and past signals of the system. Since the successful performance of the controller depends on the well-adjusting of its weights, the weights of the controller are regulated by sine cosine algorithm to earn an optimal performance. Comprehensive discussions are presented on a three-area interconnected power system. The effectiveness of the proposed scheme is demonstrated through case studies and thereby relevant conclusions are drawn.
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