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Power output analysis of transparent thin-film module in building integrated photovoltaic system (BIPV)

机译:建筑物集成光伏系统(BIPV)中透明薄膜模块的功率输出分析

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摘要

The power output of PV module was characterized depending on incidence angle and the azimuth using a transparent thin-film solar cell in a mock-up model at various slopes to the south, as a building integrated photovoltaic system. Simulated data was also evaluated to determine the influence of the inclined angles and the azimuth on the power performance of the PV module. The experimental and computed data fitted comparatively well through the relative error estimation after calibration. It was found that the PV module with a slope of 30°, facing south, provided the best power performance according to an annual power output, producing about 2.5 times higher power output than that with the vertical module. Furthermore, the PV module facing south showed higher power output than that to the east. The varying power output of the PV module with inclined angles can be explained by the impact of the incidence angle modifier of the glass on the PV module. Specifically, the increased inclined slope of the PV module resulted in the reduced solar energy transmission, which producing a significant reduction of power output for the PV module with a slope over 70°.
机译:光伏组件的输出功率根据入射角和方位角来表征,使用透明薄膜太阳能电池以模拟模型在南方的各种坡度上作为建筑物集成光伏系统。还评估了模拟数据,以确定倾斜角和方位角对PV模块的功率性能的影响。通过校准后的相对误差估算,实验数据和计算数据拟合得比较好。已经发现,向南倾斜30°的PV模块根据年发电量提供了最佳的功率性能,其发电量是垂直模块的2.5倍。此外,朝南的光伏组件显示出比东方更高的功率输出。可以通过玻璃的入射角调节器对PV模块的影响来解释PV模块以倾斜角度变化时输出的功率。具体地,PV模块的增加的倾斜斜率导致减少的太阳能传输,这对于斜率超过70°的PV模块产生了显着的功率输出降低。

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