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Stochastic analysis results for coordination of single-phase rooftop PVs in unbalanced residential feeders

机译:不平衡住宅馈线中单相屋顶PV协调的随机分析结果

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Installation of single-phase rooftop photovoltaic (PV) systems in low voltage (LV) residential feeders without controlling their ratings and locations may deteriorate the overall grid performance including reversed power flows, high losses and unacceptable voltage profiles. Therefore, in recent years the utilities have adopted limitations on the maximum allowable number of PVs in LV networks. To overcome these issues, this paper investigates the performance of a communication-based and intelligent voltage profile regulating technique under a Monte Carlo-based stochastic framework. This technique is applicable for LV residential feeders with single-phase rooftop PVs and relies on the availability of smart meters along the LV feeder to transmit phase voltage measurements to the controllers of the PV inverters. The objective of the voltage regulating technique is to minimize voltage unbalance along the feeder. The effectiveness and limitations of the voltage regulating method are investigated in this paper by the help of MATLAB-based simulation studies.
机译:在低压(LV)住宅馈线中安装单相屋顶光伏(PV)系统而不控制其额定值和位置可能会降低整个电网的性能,包括反向电流,高损耗和不可接受的电压曲线。因此,近年来,公用事业公司对LV网络中PV的最大允许数量采取了限制措施。为了克服这些问题,本文研究了基于蒙特卡洛的随机框架下基于通信的智能电压分布调节技术的性能。该技术适用于具有单相屋顶PV的LV住宅馈线,并依赖于沿LV馈线的智能电表的可用性将相电压测量值传输到PV逆变器的控制器。电压调节技术的目的是最大程度地减少馈线上的电压不平衡。本文在基于MATLAB的仿真研究的帮助下,研究了电压调节方法的有效性和局限性。

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