Voltage Regulation Method of Series Compensator Based on Impedance in Weak Distribution Network

Shuang Rong, Mingyu Xu, Xiaoguang Chen, Jiancheng Ma, Hao Li, Haoyu Li
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Abstract

As the popularity of distributed generators (DGs) increasing, existing distribution power network is becoming weaker and weaker. Therefore, a major change is threatening the voltage stability of distribution power network. And it can be alleviated by adding additional compensation devices. A series compensator is applied to improve the power transfer between a weak distribution power network, load and DGs by increasing the voltage stability of power network. A new droop control scheme based on virtual impedance is introduced to improve grid voltage stability. A low voltage power network model with SSSCs simulation study is performed in Plecs to assess the ability of the SSSC for its application in enhancement of grid voltage stability. The proposed droop control strategy is further validated on a hardware in the loop (Hil) test platform based on RT-Box.
弱配电网中基于阻抗的串联补偿器电压调节方法
随着分布式发电机的日益普及,现有的配电网变得越来越弱。因此,配电网电压稳定性面临着一个重大的变化。通过增加额外的补偿装置可以减轻这种影响。通过提高电网电压的稳定性,采用串联补偿器改善弱配电网、负载和dg之间的电力传输。为了提高电网电压的稳定性,提出了一种基于虚阻抗的下垂控制方法。在Plecs中对一个带有SSSC的低压电网模型进行了仿真研究,以评估SSSC在提高电网电压稳定性方面的应用能力。在基于RT-Box的硬件在环(Hil)测试平台上进一步验证了所提出的下垂控制策略。
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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