有源前端电压/电流源整流器的工作区域

J. Espinoza, G. Joós, M. Perez, L. Moran T.
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引用次数: 17

摘要

基于三相电压源拓扑结构的商用有源前置整流器能够在充当高直流电源的同时,从配电系统中提供或吸收无功功率。这是工业设施的一个重要特征,其中高功率因数操作是关注的。本文表明,在这种拓扑中,可用的无功功率范围取决于拓扑提供给负载的实际有功功率。此外,基于电压源和电流源的拓扑结构都具有有限和可变的最大无功补偿能力。事实上,当无源负载在整流模式下运行时,当提供0.707 pu有功功率时,这两种拓扑结构都能够提供最大的无功补偿。扩展分析表明,在再生过程中,这两种拓扑结构也能够从配电系统中提供或吸收有限的无功功率。仿真和实验结果证实了理论的考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Operating region in active-front-end voltage/current source rectifiers
Commercial active-front-rectifiers based upon three-phase voltage source topologies are capable of both supplying or absorbing reactive power from the electrical distribution system while serving as high DC power supplies. This is an important feature in industrial facilities where high power factor operation is of concern. This paper shows that the available range of reactive power in such topologies depends upon the actual active power being supplied by the topology to the load. Moreover, both the voltage and current source based topologies have limited and variable maximum reactive power compensation capabilities. In fact, both topologies are capable of providing maximum reactive power compensation when supplying 0.707 pu active power when operating passive loads in the rectifier mode. Extended analysis shows that during regeneration both topologies are also capable of supplying or absorbing limited amounts of reactive power from the electrical distribution system. Simulated and experimental results confirm the theoretical considerations.
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