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Technique for Reactive Loss Reduction and Loading Margin Enhancement Using the Curves of Losses versus Voltage Magnitude

机译:使用损耗与电压幅度曲线的无功损耗降低和负载裕量增强技术

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This paper presents an alternative methodology to obtain the precise amount of shunt reactive power compensation in order to simultaneously reduce the total reactive power losses, improve the voltage profile and increase the loading margin of power systems. The amount of shunt reactive power compensation to be allocated is determined based on the curve of the total reactive power losses versus the voltage magnitude of a chosen bus. The best places for shunt reactive compensation are defined by the load bus participation factors of the critical mode provided by the static modal analysis. Simulation results employing shunt capacitors obtained with the new approach for the IEEE test systems (14, 57 and 300 buses) show that the procedure leads to a reduction in total reactive and active power losses and simultaneously improves the voltage profile and loading margin.
机译:本文提出了一种获得并联无功补偿精确量的替代方法,以同时降低总无功功率损耗,改善电压分布并增加电力系统的负载裕量。要分配的分流无功功率补偿量是根据总无功功率损耗与所选母线的电压幅度的曲线确定的。分流无功补偿的最佳位置由静态模态分析提供的临界模式的负载总线参与系数定义。采用IEEE测试系统(14、57和300总线)新方法获得的并联电容器的仿真结果表明,该过程可降低总无功和有功功率损耗,同时改善电压曲线和负载裕量。

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