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Reactive power control on residential utility-interactive PV power systems

机译:住宅公用事业互动式光伏发电系统的无功控制

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This paper aims to optimize the reactive power absorbed by residential Photovoltaic (PV) power systems interactive with a utility feeder. Therefore, a proposed algorithm has been introduced here to assess the optimal size and location of static VAR compensator (SVC) at different operation conditions of residential PV systems. In this algorithm, a three-phase load flow analysis is used to calculate the size of SVC at different perpetration levels and methods of operating PV systems, inverter power factors and load profiles to realize the substation power factor as well as PV penetration level is zero. Also, this size is optimized according to the locations to improve the voltage regulation and losses on the study feeder. The proposed algorithm is applied to develop the SVC size and location on an Egyptian utility feeder-interactive residential PV system at a constant value of power factor at the substation. Also, the effect of total reactive power on the feeder voltage and losses are deduced at different PV systems operation conditions.
机译:本文旨在优化与公用电源馈线交互的住宅光伏(PV)电力系统吸收的无功功率。因此,此处引入了一种拟议算法,以评估住宅光伏系统在不同运行条件下静态VAR补偿器(SVC)的最佳尺寸和位置。在该算法中,使用三相潮流分析来计算在不同实施级别下的SVC大小以及运行光伏系统的方法,逆变器功率因数和负载曲线,以实现变电站功率因数以及PV渗透水平为零。而且,根据位置优化了此尺寸,以改善电压调节和研究馈线上的损耗。所提出的算法用于在变电站的功率因数恒定的情况下,在埃及公用事业馈线-交互式住宅光伏系统上开发SVC大小和位置。同样,在不同的光伏系统运行条件下,可以推导出总无功功率对馈电电压和损耗的影响。

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