Degradation analysis of 5-year field exposed photovoltaic modules using low-cost thermography, electroluminescence and I-V curve tests in Ecuador

M. Dávila-Sacoto, L. G. González, J. Espinoza, L. Hernández-Callejo
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引用次数: 2

Abstract

Detection of degradation of photovoltaic (PV) modules is important for the maintenance and operation of solar PV farms to reduce production losses. Infrarred (IR) Thermography, Electroluminescence (EL) and I-V curve tracers are detection techniques that generally use high-cost equipment, which limits their use in developing countries due to the tight budgets they manage for research and development. This study shows the use of low-cost alternatives to determine the deterioration of 140 solar PV modules at the University of Cuenca-Ecuador. This array has functioned continually without fail for 5 years. Measurement equipment for degradation detection techniques with a cost of less than 1,000.00USD is used and its application is validated with professional equipment. A power loss of 1.29% per year is obtained. In addition, the use of degradation values obtained from similar studies is proposed to reduce the effort of detecting deterioration modes, whose approximation allows the calculation of the power delivered by the installation with a 2.04% error. A method for the economic quantification due to the losses caused by the deterioration of solar PV modules is also exposed.
使用低成本热成像、电致发光和I-V曲线测试对厄瓜多尔5年野外暴露的光伏组件进行降解分析
检测光伏(PV)模块的退化对太阳能光伏电站的维护和运行至关重要,以减少生产损失。红外(IR)热成像、电致发光(EL)和I-V曲线示踪剂是通常使用高成本设备的检测技术,这限制了它们在发展中国家的使用,因为它们管理的研发预算紧张。这项研究展示了在厄瓜多尔昆卡大学使用低成本替代品来确定140个太阳能光伏组件的劣化。这个阵列连续工作了5年,没有出过故障。使用成本低于1000.00 usd的降解检测技术测量设备,并通过专业设备验证其应用。功率损耗为每年1.29%。此外,提出了使用从类似研究中获得的退化值来减少检测退化模式的工作量,其近似值允许以2.04%的误差计算装置传递的功率。并提出了一种太阳能光伏组件劣化所造成的损失的经济量化方法。
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