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Feeder Voltage Profile Design for Energy Conservation and PV Hosting Capacity Enhancement

机译:馈线电压曲线设计,用于节能和提高光伏承载能力

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摘要

Distribution system voltage drop can affect conservation voltage reduction efforts and also photovoltaic hosting capacity. This paper presents a voltage profile design algorithm, which employs a time-series analysis to place the necessary number of voltage control devices at appropriate locations for maintaining a feeder's voltage profile over time. With a flatter voltage profile, the feeder operating voltage can be lowered to conserve energy, and the photovoltaic (PV) hosting capacity will also increase. A key feature of the algorithm is the selective evaluation of practical constraints relevant to the design of the type of voltage control device considered. To obtain statistically relevant results for the control benefits, feeders selected for testing the algorithm are based on results from a feeder taxonomy study. Through case studies on detailed, statistically selected feeder models, both energy conversation and photovoltaic generation hosting capacity benefits are demonstrated. The effects of advanced inverter control functions are also considered.
机译:配电系统的压降会影响保护电压的降低工作量以及光伏承载能力。本文提出了一种电压曲线设计算法,该算法采用时间序列分析将必要数量的电压控制设备放置在适当的位置,以随着时间的推移保持馈线的电压曲线。电压曲线平坦时,可以降低馈线的工作电压以节省能量,并且光伏(PV)的承载能力也将增加。该算法的关键特征是对与所考虑的电压控制设备类型的设计有关的实际约束条件的选择性评估。为了获得与控制效益有关的统计相关结果,选择用于测试算法的馈线是基于馈线分类法研究的结果。通过对详细的,经统计选择的馈线模型进行案例研究,证明了能源对话和光伏发电承载能力的好处。还考虑了高级变频器控制功能的效果。

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