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Voltage violation in four-wire distribution networks integrated with rooftop PV systems

机译:四线配电网中的电压违规与屋顶PV系统集成

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摘要

Integration of rooftop photovoltaic (PV) systems in a three-phase four-wire distribution network cause voltage-violations namely voltage-rise and voltage unbalance. This study investigates the factors that affect both the voltage-rise and voltage unbalance in low voltage distribution network integrated with the rooftop PV systems. The concerning factors are classified into active factors such as; loads active powers, PV active powers, and bus reactive powers, and passive factors such as; numbers of feeder buses and neutral-grounded resistances. The study also determines the factors conditions at which the highest values of both voltage-rise and voltage unbalance occurred. Moreover, the most and least significant effects of individual factors on both voltage-rise and voltage unbalance are studied. The studied system is simulated and implemented in MATLAB software environment and the feeder loads are modelled based on Back-Forward Sweep method. The simulation results identify that the conditions of the worst voltage-rise and voltage unbalance cases depend on the collective influence of the studied factors.
机译:屋顶光伏(PV)系统在三相四线配电网中的集成导致电压违规即电压 - 上升和电压不平衡。本研究调查了影响与屋顶PV系统集成的低压配电网中电压上升和电压不平衡的因素。关于的因素被分类为主动因素,如;负载有源功率,光伏电源和总线无功功率,以及无源因素,如;馈线总线数量和中性接地电阻。该研究还确定了电压上升和电压不平衡的最高值的因素条件。此外,研究了各个因素对电压上升和电压不平衡的最低效果。在MATLAB软件环境中模拟和实现了所研究的系统,馈线负载基于前后扫描方法进行建模。仿真结果确定最差电压和电压不平衡情况的条件取决于所研究因素的集体影响。

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