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POSSIBILITIES AND CHALLENGES OF THERMAL TRANSIENT TESTING AS A CHARACTERIZATION METHOD FOR PHOTOVOLTAIC DEVICES

机译:热暂态测试作为光伏设备表征方法的可能性和挑战

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摘要

The thermal behaviour of mass production terrestrial solar modules is a somehow neglected but very important issue of photovoltaics. Despite its significant influence on the power generation, the thermal properties of solar modules are mostly not taken into account in daily applications. In recent literature thermal transient testing was suggested as a possible solution to proper thermal characterization of photovoltaic devices. In this paper we give a short overview on the known issues of the thermal transient testing of photovoltaic devices and address the issue of the variation of the structure function at different hearing currents as well as the influence of the initial degradation of amorphous solar cells on the measurement results. It is shown that for small current densities the increasing forward driving current (i.e. the heating current) can have a strong influence on the size of the active area that on the other hand determines the volume of the heat path. Due to this an increasing heating current results in the decrease of the junction to ambient thermal resistance, with the thermal resistance converging to a minimum value at high heating currents. The phenomenon was also investigated by Kelvin probe potential mapping. In addition it was investigated how the initial degradation of amorphous silicon solar cells effect the results of the thermal transient measurement.
机译:大规模生产地面太阳能电池组件的热行为在某种程度上被忽略了,但是非常重要的光伏问题。尽管它对发电产生重大影响,但在日常应用中大多数情况下并未考虑太阳能模块的热性能。在最近的文献中,建议将热瞬态测试作为对光伏器件进行适当热特性分析的一种可能的解决方案。在本文中,我们对光伏器件的热瞬态测试的已知问题进行了简要概述,并解决了在不同听觉电流下结构功能的变化以及非晶太阳能电池的初始退化对其影响的问题。测量结果。结果表明,对于较小的电流密度,增加的正向驱动电流(即加热电流)会对有源区的大小产生很大影响,而有源区的大小又决定了热路径的体积。因此,增加的加热电流导致结点到环境热阻的减小,在高加热电流下,热阻收敛到最小值。还通过开尔文探针电势图研究了该现象。此外,还研究了非晶硅太阳能电池的初始退化如何影响热瞬态测量的结果。

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