A proportional resonant controller tuning method for grid connected power converters with LCL+trap filter

Weiyi Zhang, A. Cantarellas, D. Remon, A. Luna, P. Rodríguez
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引用次数: 5

Abstract

Three-phase power converters are largely employed in power generation facilities based on renewable energy sources, and these converters commonly working in grid connection mode are frequently connected to the grid through passive filters. Nowadays the need for larger power converter-based generation plants increases continuously, and LCL+trap filter arises as a solution when switching frequency is reduced due to the power increase. However, the tuning of current controllers becomes more complex as the LCL+trap filter lead to a considerably high order system. In this work a method for tuning the gains of proportional resonant current controllers for three-phase high power converters linked to the grid through a LCL+trap filter is proposed and analyzed. Simulation and experimental results taken in different cases are shown to validate the proposed method.
LCL+陷阱滤波器并网电源变换器的比例谐振控制器整定方法
三相电源变流器在可再生能源发电设施中大量使用,这些变流器通常以并网方式工作,经常通过无源滤波器接入电网。如今,基于大功率变流器的发电厂的需求不断增加,LCL+陷阱滤波器作为一种解决方案出现,当开关频率因功率增加而降低时。然而,由于LCL+陷阱滤波器导致一个相当高阶的系统,电流控制器的调谐变得更加复杂。本文提出并分析了一种通过LCL+陷阱滤波器对连接电网的三相大功率变换器的比例谐振电流控制器增益进行调谐的方法。仿真和实验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。
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