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首页> 外文期刊>Japanese journal of applied physics >Estimation of operating temperature and energy output of concentrator photovoltaic module under concentration conditions
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Estimation of operating temperature and energy output of concentrator photovoltaic module under concentration conditions

机译:聚光条件下聚光光伏组件的工作温度和能量输出估算

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The operating temperature of a concentrator photovoltaic (CPV) module is a dominant factor in its conversion efficiency. It is necessary to reduce the operating temperature to generate a high output of a CPV module under field operation. Therefore, we estimated the operating temperature and conversion efficiency of a cell or module under real concentrating operations. First, we developed a heat transfer model for the CPV module. The operating temperature in the CPV module was calculated as functions of the thermal resistance and the heat transfer coefficient. A low thermal resistance between the solar cell and the back-surface and a high heat transfer coefficient of the back-surface were effective for reducing operating temperature. Next, the conversion efficiency of a triple-junction solar cell was calculated using an equivalent circuit simulation. We can evaluate the cell performance under actual operating conditions using the calculated operating temperatures of the cell.
机译:聚光光伏(CPV)模块的工作温度是其转换效率的主要因素。必须降低工作温度以在现场操作下产生高输出的CPV模块。因此,我们估算了实际浓缩操作下电池或模块的工作温度和转换效率。首先,我们为CPV模块开发了一种传热模型。计算CPV模块中的工作温度是热阻和传热系数的函数。太阳能电池与背面之间的低热阻和背面的高传热系数对于降低工作温度是有效的。接下来,使用等效电路仿真来计算三结太阳能电池的转换效率。我们可以使用计算出的电池工作温度来评估实际工作条件下的电池性能。

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