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首页> 外文期刊>Indian Journal of Pure & Applied Physics >Experimental investigation of on-site degradation of crystalline silicon PV modules under Malaysian climatic condition
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Experimental investigation of on-site degradation of crystalline silicon PV modules under Malaysian climatic condition

机译:马来西亚气候条件下晶体硅PV模块现场降解的实验研究

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摘要

Photovoltaic (PV) power plant capacity is growing very fast in Malaysia. The operating capacity of a PV plant digresses from the installed capacity after several years of operation. The degradation rate of different poly and mono crystalline silicon PV modules due to real field aging at various time spans has been detected by EL imaging, maximum power measurement and dark I-V analysis. The obtained degradation values of PV modules are 1.78, 7.06, 13.92, 17.04 and 17.42% due to ageing at a period of 8 months, 16 months, 4 years, 9 years and 11 years, respectively. The reason behind this degradation is attributed to the reduction of shunt resistance which declines gradually as result of aging. The degradation rate of a PV module has been estimated as 18.61% after 21 years of aging. Temperature coefficient of maximum power of PV module also degrades due to aging. And the rate of temperature coefficient of maximum power degradation decreases with the increase of aging period.
机译:光伏(PV)发电厂的能力在马来西亚生长很快。 PV工厂的运行能力从安装的容量下的运行后的安装容量。 通过EL成像,最大功率测量和暗I-V分析检测了由于各个时间跨度的真实场老化引起的不同聚晶和单晶硅PV模块的降解速率。 由于8个月,16个月,4岁,9岁和11年,所获得的PV模块的降解值为1.78,7.06,13.92,17.04和17.42%。 这种降解背后的原因归因于分流抗性的减少,随着老化的结果,逐渐下降。 老化21年后,PV模块的降解速率估计为18.61%。 PV模块的最大功率温度系数也因老化而劣化。 随着老化时期的增加,最大功率降低的温度系数的温度系数降低。

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