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Feasibility of solar tracking systems for PV panels in hot and cold regions

机译:在炎热和寒冷地区用于太阳能电池板的太阳能跟踪系统的可行性

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Solar tracking systems would probably increase the efficiency of a PV module, but when and where. There are many factors that affect the performance of PV panels, especially crystalline silicon panels, e.g. overheating due to excessive exposure to solar irradiance in a hot climate as in Sunbelt countries. So, it could be the case that a tracking system is not necessary for a Sunbelt country. The objective of this research is to determine mathematically the performance of a PV panel as a function of tracking the sun and the operating conditions. The used mathematical model is validated experimentally and then applied for several environments, i.e. hot as well as cold regions. It has been found that the gain in electrical energy from tracking the sun is about 39% in case of a cold city as Berlin, Germany. While the gain in energy does not exceed 8% in case of a hot city as Aswan, Egypt, due to overheating of the PV panels. However, if the energy needed for running the tracking system, which ranges from 5% to 10% of the energy generated, is included in this analysis then tracking the sun will not be feasible in hot countries. (C) 2015 Elsevier Ltd. All rights reserved.
机译:太阳能跟踪系统可能会提高光伏组件的效率,但何时何地。有许多因素会影响PV板的性能,尤其是结晶硅板,例如硅。像Sunbelt国家一样,在炎热的气候中过度暴露于太阳辐照下而导致过热。因此,对于Sunbelt国家来说,可能不需要跟踪系统。这项研究的目的是通过数学方法确定光伏面板的性能,该性能是跟踪太阳和工作条件的函数。实验中验证了所使用的数学模型,然后将其应用于多种环境,即热区和冷区。已经发现,在像德国柏林这样的寒冷城市的情况下,跟踪太阳产生的电能收益约为39%。虽然由于光伏面板过热,在埃及阿斯旺这样的高温城市中,能源收益不会超过8%。但是,如果将运行跟踪系统所需的能量(占生成的能量的5%到10%)包括在此分析中,则在炎热的国家中跟踪太阳将不可行。 (C)2015 Elsevier Ltd.保留所有权利。

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