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Evaluation of Energy Production for Large-scale Photovoltaic Plant with Different Configurations

机译:不同配置的大型光伏电站发电量评估

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In this paper, comprehensive analysis of energy production of large scale PV plants with different configurations was performed. Totally six different configurations were compared, including 1) PV plant with conventional central inverters; 2) PV plant with string inverters; 3) PV plant with series connected panel level DC optimizers of Boost topology; 4) PV plant with series connected panel level DC optimizers of Buck topology; 5) PV plant with series connected panel level DC optimizers of Boost-Buck topology; and 6) PV plant with string level DC optimizers in parallel. Static models of PV plants based on PV panel level mismatch were established for energy production. The impact of geographical locations would be reflected in the radiation received by PV plant, and PV panel aging reflected in the degradation of the short circuit current of each PV module. The relation curve between the efficiency of inverters and DC optimizers and their output were simplified and applied in the model. PV panel aging influence on the energy production was analyzed in detail.
机译:本文对具有不同配置的大型光伏电站的能源生产进行了综合分析。总共比较了六种不同的配置,其中包括:1)具有常规中央逆变器的光伏电站; 2)带有串式逆变器的光伏电站; 3)具有串联连接的Boost拓扑的面板级DC优化器的光伏电站; 4)光伏电站,具有串联连接的Buck拓扑的面板级DC优化器; 5)具有串联连接的Boost-Buck拓扑的面板级DC优化器的光伏电站; 6)并联有串级直流优化器的光伏电站。建立了基于光伏面板水平失配的光伏电站静态模型,用于能源生产。地理位置的影响将反映在光伏电站接收到的辐射中,而光伏面板的老化则反映在每个光伏模块短路电流的降低中。简化了逆变器和直流优化器效率及其输出之间的关系曲线,并将其应用于模型中。详细分析了光伏面板老化对能源生产的影响。

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