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CURRENTS' PHYSICAL COMPONENT (CPC) POWER THEORY FOR THREE-PHASE FOUR-WIRE SYSTEMS

机译:三相四线系统的电流的物理组件(CPC)电源理论

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The Currents' Physical Component (CPC) theory defines powers associated with distinctive physical phenomena and provides fundamentals for a design of reactive power compensators in single-phase and three-phase three-wire power systems under non-sinusoidal conditions. This paper presents the application of the CPC power theory to three-phase four-wire power systems. Respecting the principles of German standard (DIN), the application of the CPC power theory to three-phase four-wire systems is based on virtual star point as voltage reference, in order to have the sum of the voltages equal to zero. This eliminates errors caused by having the contribution of zero-sequence voltages in power definitions. The simulation results confirm the validity and applicability of the CPC power theory to three-phase four-wire power systems for a variety of loads.
机译:电流的物理成分(CPC)理论定义了与独特物理现象相关的功率,并在非正弦状况下单相和三相三线动力系统中的无功功率补偿器设计提供基础。本文介绍了CPC电源理论在三相四线电力系统中的应用。尊重德国标准(DIN)的原则,将CPC电源理论应用于三相四线系统的基于虚拟星点作为电压参考,以使电压等等于零。这消除了通过在功率定义中具有零序电压的贡献而引起的错误。仿真结果证实了CPC电源理论对三相四线电力系统的有效性和适用性,用于各种负载。

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