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Effect of the Sun Elevation for Fixed PV System and Single-Axis-Tracking PV System

机译:固定光伏系统的阳光升降和单轴跟踪光伏系统的影响

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The framework of the PV system to be studied in this paper is installed in NTUT. The case-site configuration has 70. 3SkWp solar photovoltaic power generation capacity, a solar photovoltaic power generation system, and solar cells to absorb sunlight intensity, which is highly related.The solar photovoltaic power generation system mainly works at noon, and has the daily equivalent of about 2.5 sunshine hours in Taipei. Regarding the sun elevation in different in seasons, the highest is at noon in summer, the lowest is in winter, and it is between the above two in spring and autumn. The experimental method was to select good weather days from the end of the last two months of each season according to the degrees of difference between the solar panels and the angle of the sun's projection. It was found that the single-axis-tracking PV system generating capacity in the summer is about 15% higher than a fixed system, but in the spring/autumn/ winter have little difference in power output, thus, efficiency is not significant.
机译:本文研究了PV系统的框架安装在NTUT中。案例现场配置具有70. 3SKWP太阳能光伏发电能力,太阳能光伏发电系统和太阳能电池吸收阳光强度,这是高度相关的。太阳能光伏发电系统主要在中午工作,每天都有在台北约2.5阳光下。关于季节不同的太阳海拔,最高的是夏天中午,最低的是在冬天,它在春天和秋季的上述两者之间。实验方法是根据太阳能电池板与太阳投射的角度之间的差异,从每个季节的最后两个月结束时选择好天气日。结果发现,夏季的单轴跟踪光伏系统产生容量比固定系统高约15%,但在弹簧/秋季/冬季的功率输出差异很小,因此,效率不显着。

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