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Visual and electrical degradation data of five years aged rooftop photovoltaic modules

机译:五年老化的屋顶光伏模块的视觉和电气降解数据

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摘要

Sun light as a renewable energy resource is getting popular day by day. Power production from a solar power plant is extensively dependent on the weather condition, daylight duration, available sunlight, air quality etc. Thus installation of large scale solar power plant requires long term feasibility study, previous five years weather data, lifetime of the solar panel, projected maintenance requirement and man power. In this survey we have visited several sites of roof top solar power plants in the Dhaka city which are aged at least five years. Firstly, we have conducted visual study of the solar panels on the roof top for visible degradation due to environment and ageing. Then we have measured Current-Voltage characteristics under sun light using portable PV-200 Seaward I-V Tracer. The Current-Voltage data were analyzed using ‘Seaward Solar Chart’ data analysis tool. The tool was used to plot Current-Voltage and Power-Voltage curves. From the data we have estimated the Standard Test Condition (STC) power, Fill Factor (F.F) and Efficiency of selected photovoltaic modules. To get a clear view over the experience of installed rooftop solar photovoltaic modules in Dhaka city, the data will be useful. The data will help us to project the challenges and provide a guide line to maintain an economically viable solar photovoltaic installation.
机译:作为可再生能源的太阳光正日渐流行。太阳能发电厂的发电量在很大程度上取决于天气状况,日光持续时间,可利用的阳光,空气质量等。因此,大型太阳能发电厂的安装需要长期的可行性研究,前五年的天气数据,太阳能电池板的使用寿命,预计的维护要求和人力。在本次调查中,我们访问了达卡市屋顶太阳能发电厂的多个站点,这些站点的年龄至少为5年。首先,我们对屋顶的太阳能电池板进行了视觉研究,以观察由于环境和老化而导致的可见退化。然后,我们使用便携式PV-200 Seaward I-V示踪剂测量了太阳光下的电流-电压特性。使用“ Seaward Solar Chart”数据分析工具分析了当前电压数据。该工具用于绘制电流-电压和功率-电压曲线。根据数据,我们估算了所选光伏模块的标准测试条件(STC)功率,填充因子(F.F)和效率。为了清楚地了解达卡市安装的屋顶太阳能光伏模块的经验,这些数据将很有用。这些数据将帮助我们预测挑战,并为维持经济可行的太阳能光伏装置提供指导。

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