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Optimal sizing and location of a PV system on three-phase unbalanced radial distribution feeder avoiding reverse power flow

机译:三相不平衡径向分布馈线上光伏系统的最佳尺寸和位置,避免逆向潮流

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A suitable procedure for optimal sizing and location of a single Photovoltaic Distributed Generation (PVDG) unit on three-phase unbalanced radial distribution feeder has been developed. The procedure avoids reverse power flow along the feeder. It considers the peak mismatch of the feeder load curve and the PVDG production curve. With such mismatch, the PVDG system can produce only part of its capacity at the time the feeder meets its peak demand. Hence, solving the optimization problem for maximum line peak power loss reduction could make no sense. Alternatively, minimization of the accumulated line power losses over the day (line energy loss) is more appropriate in this application. A suitable derivation has been developed to rate the line energy loss reduction considering only one time interval, namely Feasible Optimization Interval (FOI). Thus, the optimization procedure can be solved for maximum line energy-based benefits considering only the FOI. This avoids running the calculations for each time interval over the whole duration. The procedure has been applied successfully on two 11kV feeders within the Abu Dhabi Distribution network.
机译:已经开发了一种合适的程序,用于在三相不平衡径向分布馈线上优化单个光伏分布式发电(PVDG)单元的尺寸和位置。该过程避免了沿着馈线的反向功率流。它考虑了馈线负载曲线和PVDG生产曲线的峰值不匹配。由于存在这种不匹配,PVDG系统在馈线满足其峰值需求时只能产生部分容量。因此,解决优化问题以最大程度地降低线路峰值功率损耗是没有道理的。可替代地,在该应用中,将一天中累积的线路功率损耗(线路能量损耗)最小化是更合适的。已经开发了一种合适的推导,以仅考虑一个时间间隔即可行优化间隔(FOI)来评估线路能量损失的降低。因此,仅考虑FOI,就可以解决基于最大线路能量的最大收益的优化程序。这样可以避免在整个持续时间内为每个时间间隔运行计算。该程序已成功应用于阿布扎比配电网内的两个11kV馈线。

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