基于平均电压观测器的微电网无功共享分布式二次滑模控制

Lei Huang, Wei Sun, Ziran Yan, Qiyue Li, Weitao Li
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引用次数: 0

摘要

将分布式发电机组组合成自运行的孤岛微电网,有利于提高新能源发电的渗透率。然而,在孤岛微电网中,阻抗失配导致了电压调节与无功分担之间的矛盾。为此,本文提出了一种基于平均电压观测器的分布式滑模二次控制策略,在实现无功共享的同时,将微网的平均电压调整到参考值。本文首先给出了基于下垂控制的孤岛微电网分层控制体系结构;其次,分析了一次控制的不足,提出了二次控制的目标;然后介绍了用于二次控制的平均电压观测器;然后,通过选择滑模函数并结合指数趋近律,设计了分布式滑模二次电压控制器;最后,通过仿真实验验证了所提控制策略的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Average Voltage Observer Based Distributed Secondary Sliding Mode Control with Reactive Power Sharing for Microgrids
Combining distributed power generation units into self-operating islanded microgrids is conducive to improving the penetration rate of new energy power generation. However, the impedance mismatch leads to the contradiction between voltage regulation and reactive power sharing in islanded microgrids. To this end, based on the average voltage observer, this paper proposes a distributed sliding mode secondary control strategy, which can adjust the average voltage of the microgrid to the reference value while realizing reactive power sharing. In this paper, first, the hierarchical control architecture for islanded mi-crogrids based on droop control is shown; next, the deficiencies of the primary control are analyzed, and the goals of the secondary control are given; after that, the average voltage observer used in secondary control is introduced; then, the distributed sliding mode secondary voltage controller is designed by selecting the sliding mode function combined with the exponential reaching law; finally, the simulation experiment is carried out to verify the performance of the proposed control strategy.
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