首页> 外文会议>Industrial Electronics Society, 2001. IECON '01. The 27th Annual Conference of the IEEE >Reactive power compensation capabilities as a function of parasitic components in three-phase AC/DC voltage and current source rectifiers
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Reactive power compensation capabilities as a function of parasitic components in three-phase AC/DC voltage and current source rectifiers

机译:无功功率补偿功能与三相AC / DC电压和电流源整流器中的寄生元件有关

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AC/DC PWM converters are capable of either supplying or absorbing reactive power while supplying real power to a given load. The operating region is a graphical representation of the range of reactive and active power that these topologies can handle. This paper shows the dependence of the operating region as a function of the parasitic components of the system. Particularly, the dependence upon parasitic resistances of the input filter, which are present in the inductors and capacitors. It is found that the presence of such parasitic components reduces the operating region in voltage source rectifiers, thus, a reduced reactive power compensation range is achieved in practice. The paper shows a systematic mathematical approach to determine how the operating region is modified as a function of such components. Preliminary results show that up to a 20% of the amount of reactive power compensation is lost. Simulated and experimental results confirm the theoretical considerations.
机译:AC / DC PWM转换器能够提供或吸收无功功率,同时向给定负载提供有功功率。工作区域是这些拓扑可以处理的无功和有功功率范围的图形表示。本文显示了工作区域的依赖关系,该依赖关系是系统寄生组件的函数。特别是,电感器和电容器中存在的对输入滤波器寄生电阻的依赖性。已经发现,这种寄生成分的存在减小了电压源整流器中的工作区域,因此,实际上实现了减小的无功功率补偿范围。本文展示了一种系统的数学方法来确定如何根据这些组件来修改操作区域。初步结果表明,最多损失了20%的无功补偿量。仿真和实验结果证实了理论上的考虑。

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