基于可再生能源的弱电网级联STATCOM的谐波间补偿与电压闪变抑制

Kevin Liu, Chen Xu, Fei Wang
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引用次数: 0

摘要

电压闪变是谐波电流注入引起的重要电能质量问题之一。在以可再生能源为基础的弱电网中,这将更为关键。本文采用三角连接级联静态无功补偿器对三相电弧炉负载产生的谐波电流进行补偿,同时抑制电压闪变。分析了工业现场实际的谐波负载电流,揭示了它们对电压闪变的影响。详细阐述了包括电流指令提取、电压电流双闭环调节和电容电压平衡算法在内的补偿策略。精心设计了不同的仿真结果,对比了当前命令提取过程中低通滤波器的不同参数,以及可变网格阻抗值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interharmonic Compensation and Voltage Flicker Suppression with Cascaded STATCOM in Renewable Energy Based Weak Grid
Voltage flicker, one of the significant power quality issues, is caused by the injection of interharmonic currents. It will be more critical in renewable energy based weak grid. In this paper, a delta-connected cascaded static var compensator is employed to compensate the interharmonic currents produced by a three-phase electric arc furnace load, simultaneously suppressing the voltage flicker. The actual interharmonic load currents acquired from an industrial site are analyzed and their influence on the voltage flicker is revealed. The compensation strategy including the current command extraction, voltage and current dual close-loop adjustment, and the capacitor voltage balance algorithm, is elaborated in detail. Different simulation results are carefully designed and compared with different parameters of the low-pass filters in the current command extraction process, as well as variable grid impedance values.
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