Novel predictive control of 3-phase LCL-based active power filter

D. Wojciechowski
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引用次数: 4

Abstract

Active power filters (APF) are the most effective solution to compensate harmonic currents of nonlinear loads. Usually, they are connected to the grid via first-order inductive filter L, and in consequence inject to the grid parasitic current ripples caused VSI switching. This serious drawback can be removed by connecting APF's VSI via LCL filter. Such a solution requires control that overcomes resonance problem and, at the same time, maximizes control dynamics. This paper introduces novel, model based predictive controller for APF with LCL filter, which provides control dynamics limited only by circuit parameters. There are presented simulations and experimental results achieved for 300 kVA power blocks operating in parallel in 1.2 MVA APF system.
基于lcl的三相有源电力滤波器的新型预测控制
有源电力滤波器(APF)是补偿非线性负载谐波电流的最有效方法。通常,它们通过一阶电感滤波器L连接到电网,从而向电网注入寄生纹波,引起VSI开关。这个严重的缺点可以通过LCL滤波器连接APF的VSI来消除。这样的解决方案要求控制克服共振问题,同时,最大限度地提高控制动力学。本文介绍了一种新颖的基于模型的LCL滤波器有源滤波器预测控制器,该控制器仅受电路参数的限制而提供动态控制。给出了在1.2 MVA有源滤波器系统中300kva电源块并联工作的仿真和实验结果。
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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