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A method for the outdoor thermal characterisation of high-concentrator photovoltaic modules alternative to the IEC 62670-3 standard

机译:一种替代IEC 62670-3标准的高聚光光伏模块的室外热特性表征方法

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摘要

The IEC 62670-3 standard recommends the open-circuit voltage method to calculate the cell temperature inside high-concentrator photovoltaic (HCPV) modules. This method requires knowledge of the temperature coefficient of open-circuit voltage (beta), and the same standard provides a procedure to get this parameter. In this paper, an alternative method for the thermal characterisation of HCPV modules is proposed. As an advantage, it allows obtaining both the fie parameter and the internal thermal resistance (rho) of the device from outdoor measurements. No internal sensor for measuring the cell temperature is required as in the case of the IEC 62670-3 standard. Knowing the rho parameter allows a more accurate characterisation of the cell temperature. The proposed procedure is applied to a real HCPV module. An outdoor experimental campaign of two months in Jaen (Southern Spain) was carried out. The beta value was underestimated in a 0.50% and the rho value was overestimated in a 4.18%. When applying the estimated parameters for the prediction of the cell temperature, the open-circuit voltage method gave a root mean square error (RMSE) of 1.41 degrees C, while the internal thermal resistance method gave a RMSE of 0.62 degrees C. (C) 2017 Published by Elsevier Ltd.
机译:IEC 62670-3标准建议使用开路电压方法来计算高聚光光伏(HCPV)模块内部的电池温度。此方法需要了解开路电压(β)的温度系数,并且同一标准提供了获取此参数的过程。本文提出了一种替代的方法来表征HCPV组件的热特性。优点是,它可以从室外测量中获得设备的fie参数和内部热阻(rho)。像IEC 62670-3标准一样,不需要内部传感器来测量电池温度。了解rho参数可以更准确地表征电池温度。拟议的程序应用于实际的HCPV模块。在哈恩(西班牙南部)进行了为期两个月的户外实验。 Beta值被低估了0.50%,rho值被高估了4.18%。当将估计的参数应用于电池温度的预测时,开路电压方法的均方根误差(RMSE)为1.41摄氏度,而内部热阻方法的均方根误差为0.62摄氏度(C)。 2017年由Elsevier Ltd.出版

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