High-Frequency Grid Current Control of Parallel Inverters

S. Bruske, S. Pugliese, Steffen Flacke, Marco Liserre
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引用次数: 4

Abstract

In high power applications such as wind energy systems, smart transformers and active power filters, parallel inverters are usually utilized in order to obtain high control bandwidths for achieving low harmonic distortion or for providing grid services. This paper provides analysis of the maximum frequency of the current that can be injected by parallel neutralpoint clamped (NPC) inverters based on proportional resonant control without facing stability problems. A lead compensation is proposed to increase the control bandwidth for improved harmonic control and for a wide frequency range, which can be controlled by the parallel inverter system. The analysis is validated by simulations and experiments.
并联逆变器的高频网格电流控制
在风能系统、智能变压器和有源电力滤波器等大功率应用中,并联逆变器通常用于获得高控制带宽,以实现低谐波失真或提供电网服务。本文分析了基于比例谐振控制的并联中性点箝位(NPC)逆变器在不存在稳定性问题的情况下所能注入电流的最大频率。提出了一种超前补偿方法,以增加控制带宽,提高谐波控制效果,并使并联逆变系统控制的频率范围更宽。仿真和实验验证了分析的正确性。
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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