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Simple procedure for optimal sizing and location of a single photovoltaic generator on radial distribution feeder

机译:简单的程序,可在径向分布馈线上优化单个光伏发电机的尺寸和位置

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Unlike traditional distribution generation (DG) units, the production of photovoltaic DG (PVDG) units is non-dispatchable and largely driven by the rates of solar irradiance fall on its PV array. In this work, a suitable procedure for optimal sizing and location of single PVDGs on radial distribution feeders has been developed. It goes along with the current trend of interfacing renewable energy generators with the grid due to global warming concern. The procedure applies single PVDG unit at points on the feeder while allowing reverse power flow (RPF) within the feeder line sections. The optimisation objective is to minimise the accumulated line power loss over the day (line energy loss) along the feeder, while keeping the voltage profile along the feeder within permissible limits. A method has been applied to rate the line energy loss considering one time interval, namely feasible optimisation interval. The procedure has been applied to an actual 11 kV feeder in Abu Dhabi city. The application showed obvious benefits in terms of line loss reduction and improvement of the voltage profile. The procedures also resulted in alternative feasible solutions in case the optimal solution cannot be applied for any reason - like inconvenience/limitation of land or investment.
机译:与传统的分布式发电(DG)单元不同,光伏DG(PVDG)单元的生产不可调度,并且很大程度上受其光伏阵列上太阳辐射率下降的驱动。在这项工作中,已经开发了一种合适的程序,用于在径向分布给料机上优化单个PVDG的尺寸和位置。由于全球变暖的考虑,它与当前将可再生能源发电机与电网连接的趋势相吻合。该程序在馈线的各个点上应用单个PVDG单元,同时在馈线段内允许反向功率流(RPF)。优化的目标是使沿着馈线的全天的累计线路功率损耗(线路能量损耗)最小化,同时将沿着馈线的电压曲线保持在允许的范围内。已经应用一种方法来考虑一个时间间隔,即可行的优化间隔,对线路能量损耗进行评估。该程序已应用于阿布扎比市的实际11 kV馈线。该应用在降低线损和改善电压特性方面显示出明显的优势。如果由于某种原因(例如土地/投资的不便/限制)而无法应用最佳解决方案,则该程序还会产生其他可行的解决方案。

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    《Renewable Power Generation, IET》 |2014年第2期|160-170|共11页
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