基于MCCF状态估计的电压谐波补偿

Peter Krasselt, S. Weck, T. Leibfried
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引用次数: 6

摘要

现代负载大多以电力电子器件为基础,导致谐波电流的产生。因此,在配电网中观察到不断增加的谐波电压水平。并联有源电力滤波器采用基于电压的谐波补偿方案来降低谐波电压畸变。提出了一种基于电压的选择性谐波补偿(SHC)方法。利用多重复系数滤波(MCCF)状态估计进行谐波提取。固定框架广义积分器(SGI)提供了选择谐波补偿的控制。由于基于电压的SHC是在固定参考系中实现的,与同步参考系的SHC方法相比,计算量减少了。此外,MCCF状态估计器确定了存在不平衡和谐波电压时鲁棒电网同步的网格基础,进一步降低了整体SAPF控制的计算需求。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltage-based harmonic compensation using MCCF state estimation
The majority of modern loads are based on power electronic devices, resulting in harmonic current emission. In consequence, increasing harmonic voltage levels are observed in distribution grids. Shunt active power filters (SAPF) can decrease the harmonic voltage distortion with a voltage-based harmonic compensation scheme. This paper presents a method for voltage-based selective harmonic compensation (SHC). Multiple complex coefficient filter (MCCF) state estimation is utilized for harmonic extraction. Stationary frame generalized integrators (SGI) provide control of the selected harmonic compensation. As the voltage-based SHC is implemented in stationary reference frame, computational efforts are reduced compared to synchronous reference framed SHC methods. In addition, the MCCF state estimator determines grid fundamental for robust grid synchronization in presence of imbalance and harmonic voltages, further decreasing computation requirements in the overall SAPF control. Simulation results validate the effectiveness of the proposed method.
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