无外部电源的单相串联有源电力滤波器的研制

João L. Torre, Luis A. M. Barros, J. Afonso, J. G. Pinto
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引用次数: 9

摘要

电力质量问题越来越受到部分消费者、配电系统运营商(DSO)、输电系统运营商(TSO)以及其他与电力系统相关的主管单位的关注。一旦电能质量(PQ)问题直接影响到业务生产力,造成巨大的经济损失,就必须开发缓解这些问题的解决方案。有源电力滤波器(apf)是一种能够补偿PQ问题的电力电子设备,它能够根据负载或电力系统的变化动态调整其运行模式。在这些解决方案中,串联有源电力滤波器(SeAPF)是专门用来处理与电力系统电压幅值和波形有关的问题。尽管能够补偿三相系统中的电压跌落、电压膨胀、电压谐波和电压不平衡,但SeAPF并没有取得很大的成功,也没有被广泛采用。对这种设备缺乏兴趣在很大程度上是因为它的高成本,也因为SeAPF传统拓扑结构的一些限制。本文提出了一种新的拓扑结构,以及不使用耦合变压器和不需要使用外部电源直接连接到电网的单相SeAPF的控制算法。本文提出的SeAPF的拓扑结构和控制算法首先通过PSIM软件获得的仿真结果进行了评估,一旦验证,就开发了实验室原型,并给出了支持所提系统正确运行的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Proposed Single-Phase Series Active Power Filter without External Power Sources
The quality of electric power is receiving more and more attention from part of consumers, Distribution System Operators (DSO), Transmission System Operators (TSO) and other competent entities related to the electrical power system. Once the electrical Power Quality (PQ) problems have direct implications for business productivity, causing high economic losses, it is mandatory to develop solutions that mitigate these problems. Active Power Filters (APFs) are power electronic equipment capable of compensating PQ problems that have the ability to dynamically adjust their modes of operation in response to changes in load or in the power system. Among these solutions, the Series Active Power Filter (SeAPF) is specially conceived to deal with problems related to the power system voltage amplitude and waveform. Despite the ability to compensate voltage sags, voltage swells, voltage harmonics, and voltage imbalances in three-phase systems, the SeAPF has not achieved much success neither has not been widely adopted. The lack of interest in this equipment can be largely justified by its high cost and also because of some limitations presented by the SeAPF conventional topology. In this paper is presented a novel topology, as well as the control algorithms of a single-phase SeAPF that is connected directly to the power grid without the use of coupling transformers and that does not require the use of external power sources. The topology and control algorithms of the SeAPF proposed in this paper were firstly evaluated by means of simulation results obtained with PSIM software and, once validated, a laboratory prototype was developed, being presented experimental results that support the correct operation of the proposed system.
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