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Temperature coefficients of degraded crystalline silicon photovoltaic modules at outdoor conditions

机译:在室外条件下降解晶体光伏模块的温度系数

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The temperature effect on photovoltaic modules is usually quantified by means of some coefficients relating the variations of the open-circuit voltage, of the short-circuit current, and of the maximum power to temperature changes. In this paper, comprehensive experimental guidelines to estimate the temperature coefficients when measurements are performed outdoors are given. In addition, a correction procedure is applied to the short-circuit current to cancel out the influence of the fluctuations in the irradiance level. The experimental results shown in this paper refer to several single-crystalline silicon modules that have been operating for 21 years. Consequently, the estimated values of the temperature coefficients also account for module ageing processes. The coefficients of determination achieved in the case of the temperature coefficients of the open-circuit voltage and the maximum power are very close to one. Results concerning the temperature coefficients of the short-circuit current are also suitable if they are previously corrected.
机译:光伏组件的温度效应通常通过一些系数来量化,这些系数与开路电压、短路电流和最大功率随温度变化的变化有关。本文给出了在室外进行测量时估算温度系数的综合实验指南。此外,还对短路电流进行了校正,以消除辐照度水平波动的影响。本文所示的实验结果涉及几个已经运行了21年的单晶硅组件。因此,温度系数的估计值也考虑了模块老化过程。在开路电压和最大功率的温度系数的情况下获得的确定系数非常接近1。如果事先对短路电流的温度系数进行了修正,则其结果也适用。

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