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Voltage control and optimal capacitor placement in the presence of photovoltaic systems in distribution networks

机译:配网中存在光伏系统时的电压控制和最佳电容器放置

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This paper presents an approach based on genetic algorithm for optimal capacitor placement and sizing in the presence of photovoltaic systems. In this approach, the PV systems ability to inject reactive power at the daylight and also at night hours will be studied. This algorithm has been implemented on a radial distribution network with 33 buses. Simulation results show that reactive power injection of PV inverters to the grid not only reduces power losses but also can decrease the total amount of required capacitor sizes. Moreover, voltage profile has been improved. Meanwhile, the impact of PV systems penetration level on the above mentioned indices improvement is studied.
机译:本文提出了一种基于遗传算法的方法,可以在存在光伏系统的情况下优化电容器的放置和尺寸。通过这种方法,将研究光伏系统在白天和夜间注入无功功率的能力。该算法已在具有33条总线的径向分配网络上实现。仿真结果表明,光伏逆变器向电网注入无功功率不仅可以减少功率损耗,而且可以减少所需电容器尺寸的总量。此外,电压曲线得到了改善。同时,研究了光伏系统渗透水平对上述指标改善的影响。

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