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Optimal sizing of PV power plant using sizing ratio for powering critical load with parallel redundant architecture

机译:使用大小比优化光伏电站的大小,以并行冗余架构为关键负载供电

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This paper proposes a method to determine optimal size of PV array for standalone PV system feeding critical load with parallel redundant power architecture, at a desired loss of power probability (LOPP) using PV-to-Inverter sizing ratio, and studies the effect of starting current on sizing and performance of PV power plant. Meteorological data and load details are used for calculating the relative size of photovoltaic (PV) array in a bottom up approach for different PV/inverter sizing ratios from 0.5 to 1.5 while keeping inverter rated capacity constant. The analysis shows that the starting load current capability of inverter has significant effect on PV-to-Inverter sizing ratio and Performance Ratio (PR) of the system.
机译:本文提出了一种方法,该方法使用光伏与逆变器的尺寸比来确定具有期望的功率概率损失(LOPP)的,具有并行冗余电源架构的临界负载的并联光伏系统的最佳光伏阵列的最佳尺寸,并研究启动的效果有关光伏电站规模和性能的最新信息。气象数据和负载详细信息用于在自底向上方法中针对从0.5到1.5的不同PV /逆变器尺寸比例,计算光伏(PV)阵列的相对大小,同时保持逆变器额定容量不变。分析表明,逆变器的启动负载电流能力对系统的光伏对逆变器尺寸比和系统性能比(PR)有重要影响。

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