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Phase-domain power flows in the rectangular co-ordinates frame of reference including VSC-based FACTS controllers

机译:相域功率流在包括基于VSC的FACTS控制器在内的直角坐标系中

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This paper presents a method for systematic modelling of VSC-based FACTS controllers within three-phase power flows in rectangular coordinates. Among the FACTS controllers modelled are the STATCOM, SSSC, UPFC and HVDC-VSC. The approach taken is to represent the fundamental frequency operation of each power converter as a three-phase voltage source behind a leakage reactance, where one or two of them may be connected in either series or parallel depending on the FACTS controller being modelled. Active and reactive power flow equations are developed for each voltage source circuit together with constraint equations to account for co-ordinated operation of two converters, such as in modelling of UPFC and HVDC-VSC. The power flow equations representing the VSC-based FACTS controllers are combined with the nodal power equations of the power network for a combined iterative solution using a Newton-Raphson three-phase power flow algorithm in rectangular co-ordinates enabling robust and efficient solutions of three-phase power networks with any number and kind of VSC-based controllers.
机译:本文提出了一种在直角坐标系中的三相潮流中基于VSC的FACTS控制器进行系统建模的方法。建模的FACTS控制器包括STATCOM,SSSC,UPFC和HVDC-VSC。所采用的方法是将每个功率转换器的基本频率操作表示为泄漏电抗后面的三相电压源,其中取决于建模的FACTS控制器,其中一个或两个可以串联或并联连接。为每个电压源电路开发了有功和无功潮流方程以及约束方程,以说明两个转换器的协调运行,例如在UPFC和HVDC-VSC建模中。代表基于VSC的FACTS控制器的潮流方程与电网的节点功率方程组合在一起,从而在矩形坐标系中使用Newton-Raphson三相潮流算法,从而实现了组合迭代求解相电源网络,具有任意数量和种类的基于VSC的控制器。

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