一种新的混合滤波器拓扑结构用于环变换器驱动的次谐波和间谐波衰减

Pablo Aravena, L. Morán, J. Dixon, J. Espinoza, O. Godoy
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引用次数: 7

摘要

本文提出了一种由无源滤波器和串联有源滤波器组成的滤波器方案,专门用于补偿基波无功功率(无源滤波器)和电流谐波(无源和有源组合)。由环形变流器产生的低频电流子和间谐波由串联连接到C型无源滤波器的有源电力滤波器消除。无源滤波器单元消除了与环变换器拓扑相关的电流频率谐波。与传统的无源方案相比,所提出的滤波器拓扑结构显著提高了补偿效率,并允许消除无源滤波器单元,降低了成本和所需空间。本文介绍了混合滤波方案的工作原理和设计要求。仿真结果证明了该方案的有效性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Hybrid Filter Topology for Sub and Inter-Harmonic Attenuation in Cycloconverter-Fed Drives Applications
This paper presents a filter scheme composed by passive and series active power filters specially designed to compensate fundamental reactive power (with passive filters) and current harmonics (combination of passive and active). Low frequency current sub and inter-harmonics generated by cycloconverters are eliminated with an active power filter connected in series to a C type passive filter. Current frequency harmonics associated with cycloconverter topology are eliminated with passive filter units. With the proposed filter topology compensation effectiveness is significantly improved and allows the elimination of passive filter units, reducing cost and space required as compared with traditional passive schemes. This paper presents the principles of operation and design requirements of the proposed hybrid filter scheme. Simulated results based in the compensation of a real grinding mill plant prove the effectiveness and advantages of the proposed scheme.
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