首页> 外文会议>Electric Power and Energy Conversion Systems, 2009. EPECS '09 >The static VAr compensator equations development for load balancing at desired power factor based on load admittance parameters and instantaneous voltage and current values
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The static VAr compensator equations development for load balancing at desired power factor based on load admittance parameters and instantaneous voltage and current values

机译:基于负载导纳参数和瞬时电压和电流值的静态VAr补偿器方程式,用于在所需功率因数下实现负载平衡

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Various methods for load balancing and power factor correction in three-wire and four-wire networks have been presented so far. In this paper, a new formulation has been developed such that the admittance of the compensator can be calculated to balance any loads irrespective of their nature (being resistive or reactive) and to obtain the requested power factor. During the process of power factor correction, the current is always balanced and therefore in addition to the reduction of power wasting, it is possible to operate with optimum power factor. In the developed equations the parameters of the compensator are presented in terms of both the load admittance and instantaneous voltage and current values. The extended equations are general and can be applied to any load in three or four-wire distribution systems. Simulation results show the validity of the developed formulation.
机译:到目前为止,已经提出了用于三线和四线网络中的各种负载平衡和功率因数校正方法。在本文中,已经开发出一种新的公式,使得可以计算补偿器的导纳以平衡任何负载,无论其性质如何(电阻性或电抗性)并获得所需的功率因数。在功率因数校正过程中,电流始终处于平衡状态,因此,除了减少功率浪费之外,还可以以最佳功率因数工作。在已开发的方程式中,补偿器的参数以负载导纳和瞬时电压和电流值的形式给出。扩展的方程式是通用的,可以应用于三线或四线配电系统中的任何负载。仿真结果表明了所开发配方的有效性。

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