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Increasing Feeder PV Hosting Capacity by Regulating Secondary Circuit Voltages

机译:通过调节次级电路电压来提高馈线光伏承载能力

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Voltage rise is one of the major concerns that limits the photovoltaic (PV) hosting capacity or the maximum amount of PV generation that a distribution circuit can accommodate. This paper examines the effectiveness of low-voltage distribution static compensators (LV-DSTATCOMs) in increasing the PV hosting capacity of distribution circuits by mitigating voltage rise. Stochastic analysis framework is used to determine the PV hosting capacity while an iterative placement technique is used to identify effective device locations. To provide insights on the optimal device size, number, and control settings, sensitivity analysis is carried out. The results show that, with appropriate size and control settings, installation of few LV-DSTATCOMs in a distribution circuit can significantly increase its PV hosting capacity. For the circuit under consideration, a set of 23 devices has increased the PV hosting capacity from 15% to 100% of the median day time peak load.
机译:电压上升是限制光伏(PV)承载能力或分配电路可容纳的最大PV产生量的主要问题之一。本文研究了低压配电静态补偿器(LV-DSTATCOM)通过缓解电压升高来提高配电电路的PV承载能力的有效性。随机分析框架用于确定PV的承载能力,而迭代放置技术用于确定有效的设备位置。为了提供有关最佳设备尺寸,数量和控制设置的见解,进行了灵敏度分析。结果表明,在适当的尺寸和控制设置下,在配电电路中安装少量LV-DSTATCOM可以显着提高其PV承载能力。对于正在考虑的电路,一组23个设备已将PV托管容量从白天峰值时间的中值的15%增加到100%。

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