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Influence of a degraded triple-junction solar cell on the CPV system performances

机译:退化的三结太阳能电池对CPV系统性能的影响

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A concentrating photovoltaic (CPV) plant is a complex system that integrates different technologies as single or multi-junction photovoltaic cells and optical devices. The CPV system performance analysis should take into account the malfunctions that can occur during the working, especially when the system operates with high values of sunlight concentration. A critical analysis of the solar cells is necessary to define the CPV system potential. In this paper a specific configuration of a CPV system is considered, and the experimental analysis of a system with a degraded triple-junction InGaP/GaAs/Ge solar cell is investigated. In particular, the triple-junction solar cell is stressed in an accelerated aging process of about 500 operating hours with a concentration of 310 suns without using a cooling system. After this process, for another 100 working hours the system has been monitored in order to compare, corresponding to different light concentration factors, the solar cell electric characteristics, the energy production and the power conversion efficiency in the pristine and degraded states. The results show the effect of the overheating of the triple-junction solar cell caused by the excessive increase of the light intensity. Under the same irradiance of 930 W/m(2) the short circuit current, open circuit voltage and fill factor values of the aged solar cell, compared to the pristine device, result to be strongly reduced, while the extracted value of the series resistance increases and the values of the shunt resistances decrease. The increased value of the diode ideality factor m after the thermal stress indicates a non-negligible contribution of non radiative recombination within the solar cell. Similar findings are deduced comparing the electroluminescence spectra of the pristine and degraded solar cell. The thermal stress induces a marked drop of electroluminescence signal intensity in the whole investigated wavelength range. It should be note that high electroluminescence efficiency is a good indicator in solar cells for high power conversion efficiencies. In particular, the power conversion efficiency is reduced by 50% referring to a CPV system with a degraded cell, while the electric output power is decreased by 30%. Hence, it is clear that the triple-junction cell inefficiencies, principally caused by a strong thermal stress, lead to a drastic drop of the CPV system performances. Finally, an active cooling system is absolutely necessary when high values of light concentration are reached.
机译:聚光光伏(CPV)厂是一个复杂的系统,集成了不同技术,如单结或多结光伏电池和光学设备。 CPV系统性能分析应考虑到工作期间可能发生的故障,尤其是当系统在高日照浓度下运行时。要定义CPV系统的潜力,必须对太阳能电池进行严格的分析。本文考虑了CPV系统的具体配置,并研究了具有退化的三结InGaP / GaAs / Ge太阳能电池的系统的实验分析。特别地,在不使用冷却系统的情况下,在约500个工作小时的加速老化过程中对三结太阳能电池施加应力,其集中强度为310太阳。在此过程之后,在另外的100个工作小时内,已对系统进行了监视,以便比较原始光和降级状态下与不同的光聚集因子相对应的太阳能电池的电特性,能量产生和功率转换效率。结果表明由光强度的过度增加引起的三结太阳能电池的过热的影响。与原始设备相比,在930 W / m(2)的相同辐照度下,与原始设备相比,老化的太阳能电池的短路电流,开路电压和填充因子值会大大降低,而串联电阻的提取值增大,分流电阻值减小。在热应力之后二极管理想因数m的增加值表明太阳能电池内非辐射复合的贡献不可忽略。比较原始的和降解的太阳能电池的电致发光光谱,得出类似的发现。在整个研究的波长范围内,热应力导致电致发光信号强度显着下降。应当注意,高电致发光效率是太阳能电池中高功率转换效率的良好指标。特别地,相对于具有退化电池的CPV系统,功率转换效率降低了50%,而电力输出功率降低了30%。因此,很明显,主要由强烈的热应力引起的三结电池效率低下会导致CPV系统性能的急剧下降。最后,当达到高的光浓度值时,绝对需要主动冷却系统。

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