基于统一谐波电压电流降的并网变流器电压电流同步谐波控制

Yixuan Li, Jia Liu, Jinjun Liu
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引用次数: 0

摘要

成网变流器作为一种很有发展前途的技术,可以在并网模式下提供电压和频率支持,在孤岛模式下为局部负载供电。多个GFM变换器连接在同一点的共耦合(PCC)上,既要保证谐波电流的共享,又要降低PCC电压的谐波。现有的解决方案大多需要分别提取和控制各谐波序列,计算量巨大。针对这一问题,提出了一种基于统一谐波电压电流降的GFM变换器谐波控制方法。通过在PCC电压各谐波分量与输出电流之间建立统一的下垂关系,实现了在降低PCC电压谐波的同时,根据变换器容量共享谐波电流。该方法既适用于并网模式,也适用于孤岛模式,且不需要单独提取谐波序列。与现有的控制方法相比,该方法计算量小,易于在嵌入式控制器中实现。最后,在MATLAB环境下通过仿真验证了所提控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous Voltage and Current Harmonic Control of Grid-forming Converters Based on Unified Harmonic Voltage-Current Droop
As a promising technology, grid-forming (GFM) converters can provide voltage and frequency support in grid- connected mode, and power local loads in islanded mode. Multiple GFM converters connected to the same point of common coupling (PCC) should not only ensure harmonic current sharing, but also reduce the PCC voltage harmonics. Most of the existing solutions need to extract and control each harmonic sequence separately, resulting in enormous calculation. To solve this problem, a harmonic control method for GFM converters based on unified harmonic voltage-current droop is proposed. By establishing a unified droop relation between all harmonic components of PCC voltage and output current, we achieve to share harmonic current according to converter capacity while reducing PCC voltage harmonics. The proposed method is applicable to both grid-connected and islanded modes, and does not need to extract harmonic sequences separately. Compared with existing control methods, it requires less computation, thus easy to be implemented in embedded controllers. Finally, the effectiveness of the proposed control scheme is verified by simulation in the MATLAB environment.
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