Distributed low voltage ride-through operation of power converters in grid-connected microgrids under voltage sags

Xin Zhao, L. Meng, T. Dragičević, M. Savaghebi, J. Guerrero, J. Vasquez, Xiaohua Wu
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引用次数: 8

Abstract

With the increasing penetration of renewable energy, microgrids (MGs) have gained a great attention over the past decade. However, a sudden cut out of the MGs due to grid fault may lead to adverse effects to the grid. As a consequence, reactive power injection provided by MGs is preferred since it can make the MG a contributor in smooth ride through the faults. In this paper, a reactive power support strategy using droop controlled converters is proposed to aid MG riding through three phase symmetrical voltage sags. In such a case, the MGs should inject reactive power to the grid to boost the voltage in all phases at AC common bus. However, since the line admittances from each converter to point of common coupling (PCC) are not identical, the injected reactive power may not be equally shared. In order to achieve low voltage ride through (LVRT) capability along with a good power sharing accuracy, a hierarchical control strategy is proposed in this paper. Droop control and virtual impedance is applied in primary control loop while secondary control loop is based on dynamic consensus algorithm (DCA). Experiments are conducted to verify the effectiveness of the proposed control strategy.
电压跌落下并网微电网电源变流器的分布式低压穿越运行
随着可再生能源的日益普及,微电网在过去十年中受到了极大的关注。然而,由于电网故障导致的突然断电可能会对电网造成不利影响。因此,MG提供的无功功率注入是首选,因为它可以使MG在故障中平稳行驶。本文提出了一种使用下垂控制变流器的无功支持策略,以帮助MG通过三相对称电压跌落。在这种情况下,mg应该向电网注入无功功率,以提高交流公共母线各相的电压。然而,由于从每个变换器到共耦合点(PCC)的线路导纳不相同,注入的无功功率可能不会均匀共享。为了实现低电压穿越(LVRT)能力和良好的功率共享精度,本文提出了一种分层控制策略。主控制回路采用下垂控制和虚拟阻抗,次控制回路采用动态一致算法(DCA)。实验验证了所提控制策略的有效性。
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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