基于BPA的MMC无功控制方式选择方法

Xiao Yu, Guangquan Bu, Shanshan Wang, Bing Zhao
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摘要

模块化多电平变换器(MMC)通常采用直流控制,可分为内环电流控制器和外环功率控制器。外环功率控制器的控制方式可分为有功功率控制和无功功率控制。当MMC与交流系统连接时,需要选择MMC的控制方式和控制设定值。本文在分析不同系统强度下交流电网的输出特性和不同控制方式对交流电网的影响以及交流电网的无功需求的基础上,提出了一种无功控制的选择方法,并在电力系统仿真程序BPA上进行了研究。该方法使交流电网的电压和无功潮流调节需求与MMC输出无功功率和电压相匹配。最后,建立了基于双酚a的仿真模型,验证了所提方法的有效性,并举例说明了该方法的实现方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BPA based Selection Method for MMC Reactive Power Control Mode
Modular multilevel converter (MMC) usually adopt direct current control, which can be divided into inner loop current controller and outer loop power controller. The control modes of the outer loop power controller can be divided into active power control and reactive power control. When MMC is connected to AC system, it is necessary to select control mode and control setting values for MMC. This paper proposes a selection method of reactive power control on the basis of analyzing the output characteristics and the influence on AC grids of different control modes along with the reactive power demand of AC grids with different system strength, which is carried out on power system simulation program BPA. The method makes the voltage and reactive power flow regulation demand of AC grid match with MMC output reactive power and voltage. Finally, a simulation model is built on BPA to verify the effectiveness of the proposed method as well as an example of how to carry out this method.
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