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Effects of Mutual Coupling and Transposition of Phase Conductors on the Maximum Photovoltaic Penetration Levels in Distribution Feeders

机译:相导体的相互耦合和换位对配电馈线中最大光伏渗透水平的影响

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The penetration level of solar photovoltaic (PV) generation in a distribution system is often limited by the constraint on voltage variation due to large intermittent power injection. This paper investigates the penetration levels of PV systems in distribution feeders by taking into account the mutual coupling effect between phase conductors. The equivalent circuit models for distribution line segments, including the grounding effect and the mutual coupling between phase conductors and the grounded neutral line, are applied to computer simulation. Two practical Taipower distribution feeders are selected for system analysis to study the maximum PV penetration with the proposed precise modeling of the feeder network. The increase of allowable PV penetration by executing the transposition of phase conductors to improve the three-phase balance is also analyzed.
机译:配电系统中太阳能光伏(PV)生成的渗透水平通常受到由于间歇性大功率注入导致的电压变化的限制。本文通过考虑相导体之间的相互耦合效应,研究光伏系统在配电馈线中的渗透水平。配电线段的等效电路模型(包括接地效果以及相线与接地中性线之间的相互耦合)被应用到计算机仿真中。选择了两个实用的Taipower配电馈线进行系统分析,以通过提出的馈线网络精确建模研究最大的PV穿透力。还分析了通过执行相导体的换位以改善三相平衡而增加的允许PV穿透。

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