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Control of Ripple Eliminators to Improve the Power Quality of DC Systems and Reduce the Usage of Electrolytic Capacitors

机译:控制纹波消除器以提高直流系统的电能质量并减少电解电容器的使用

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摘要

The problem of voltage/current ripples has become a primary power quality issue for DC systems, which could seriously degrade the performance on both the source side and the load side and lead to reliability concerns. In this paper, a single-phase PWM-controlled rectifier is taken as an example to investigate how active control strategies can improve the power quality of DC systems, reduce voltage ripples and, at the same time, reduce the usage of electrolytic capacitors. The concept of ripple eliminators recently proposed in the literature is further developed and the ratio of capacitance reduction is quantified. With such ripple eliminators, this power quality problem is formulated as a control problem to actively divert the ripple current on the DC bus. The main focus of this paper is to investigate how advanced control strategies could improve the performance of ripple eliminators. An advanced controller on the basis of the repetitive control is proposed for one possible implementation of ripple eliminators in the continuous current mode (CCM). Experimental results are presented to verify the effectiveness of the strategy with comparison to another ripple eliminator operated in the discontinuous current mode (DCM). It has been shown that the proposed instantaneous ripple-current diversion in CCM leads to a nearly fourfold improvement of performance.
机译:电压/电流纹波问题已成为DC系统的主要电源质量问题,这可能会严重降低电源端和负载端的性能,并导致可靠性问题。本文以单相PWM控制的整流器为例,研究主动控制策略如何改善DC系统的电能质量,减少电压纹波并同时减少电解电容器的使用。最近在文献中提出的消除波纹的概念得到了进一步发展,并且电容减小的比率得以量化。使用这样的波纹消除器,此电能质量问题被公式化为控制问题,以主动转移DC总线上的波纹电流。本文的主要重点是研究高级控制策略如何改善除波纹器的性能。提出了一种基于重复控制的高级控制器,用于在连续电流模式(CCM)中消除波纹的一种可能的实现方式。与以不连续电流模式(DCM)运行的另一种消除波纹器相比,实验结果表明该策略的有效性。已经表明,在CCM中提出的瞬时脉动电流转移导致性能提高了近四倍。

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