Evaluation of performance and early degradation of a 180.8 KWP rooftop on a grid-connected photovoltaic system in a Colombian tropical region environment

Cinthia Audivet, E. Romero, Jesús García, A. Fonseca, Horacio Pinzón, A. Bula, M. Sanjuan
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Abstract

The use of renewable energy such as photovoltaic is growing. According to IRENA, these systems are one of the most dynamic generation technologies. The global photovoltaic market has grown rapidly between 2000 and 2016 at an annual average compound rate of 44%, from 0.8 GW to 291 GW. In Colombia, regions with high solar irradiation levels have been identified as emerging markets. The Government's plan is to increase the share of non-conventional energies in the energy matrix from 2% to 8% - 10%. However, the uncertainties associated with technology and sites specific degradation rates make it difficult to calculate accurate electricity generation efficiencies and predicting future performance and material degradation rates, and thus business models exhibit considerable deviations related to the real electricity generation rates. This work studies the performance and early degradation of a 180.8 kWp rooftop on grid connected photovoltaic system, installed in Barranquilla, Colombia. Two methods were used: i) estimation of solar conversion efficiency, and ii) visual inspection. The first method includes a cross analysis of climatic conditions, irradiance levels, and the generated energy downstream the inverters. The second method consists of periodical visual inspections of installed modules to check: discoloration, delamination, busbar corrosion, cracking of solar cell, glass breakage, anti-reflection coating, and solder bond.
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哥伦比亚热带地区180.8 KWP屋顶并网光伏系统性能及早期退化评估
光伏等可再生能源的使用正在增加。据IRENA称,这些系统是最具活力的发电技术之一。从2000年到2016年,全球光伏市场以44%的年均复合增长率快速增长,从0.8吉瓦增长到291吉瓦。在哥伦比亚,太阳辐照水平高的区域已被确定为新兴市场。政府的计划是将非常规能源在能源矩阵中的份额从2%增加到8% - 10%。然而,与技术和特定地点的降解率相关的不确定性使得难以计算准确的发电效率并预测未来的性能和材料降解率,因此商业模式与实际发电率表现出相当大的偏差。本工作研究了安装在哥伦比亚巴兰基亚的180.8 kWp屋顶并网光伏系统的性能和早期退化。采用了两种方法:1)估算太阳能转换效率;2)目测。第一种方法包括对气候条件、辐照水平和逆变器下游产生的能量进行交叉分析。第二种方法是定期对已安装的组件进行目视检查,检查:变色、分层、母线腐蚀、太阳能电池开裂、玻璃破损、防反射涂层、焊点粘结。
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