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Design Optimization of Distributed PV Power Station Based on the Efficiency Modelling and Analysis

机译:基于效率建模与分析的分布式光伏电站设计优化

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Based on the large amount of data from a 3 MW distributed photovoltaic power station and a module-level experimental platform, the mathematical model of the performance ratio varying with the irradiation is established in this paper. The performance ratio value of the power station is 0.59, which is far below the engineering experience value. Therefore, the inverter efficiency, photovoltaic module efficiency and photovoltaic array efficiency are analyzed individually, and the focus is laid on the loss of performance ratio that caused by the voltage mismatch between the photovoltaic array and the maximum power point tracking of the inverter. In order to improve the performance ratio, the number of modules in series are designed and optimized. The research results are conducive to guide the optimal design of distributed photovoltaic power plants and significantly increase the power generation capacity.
机译:基于3MW分布式光伏电站的大量数据和模块级实验平台,建立了性能比随辐照度变化的数学模型。电站的性能比值为0.59,远低于工程经验值。因此,分别对逆变器效率,光伏组件效率和光伏阵列效率进行了分析,重点是光伏阵列之间的电压失配和逆变器的最大功率点跟踪引起的性能比损失。为了提高性能比,设计并优化了串联模块的数量。研究结果有助于指导分布式光伏电站的优化设计,并大大提高发电量。

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