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A detailed investigation and performance optimization of a photovoltaic panel integrated with a reflecting mirror

机译:用反射镜集成的光伏面板的详细研究和性能优化

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In this paper, the performance of a photovoltaic panel Integrated with a reflecting mirror is investigated. In this regard, the effects of panel and mirror tilt angles, and the mirror length on the system performance are modeled. The cell temperature rises have also been considered. Moreover, by a 3D model, the lighting and shading statuses are studied in detail, and all the possible conditions are presented and modeled. The resulting model can calculate the amount of incident solar energy on the panel and the generated electrical power in every moment during a year. This amount is dependent on the system configuration and capacity and its location. A 250-W photovoltaic panel and the city of Tehran have been considered the basics of calculations to assess the model results. By employing the genetic algorithm method, the optimum configuration has been found to have 69.084 degrees and 0 degrees tilt angles for the panel and the mirror, respectively, at the mirror length of 2 m. This configuration can generate 2.38 GJ (613.89 kWh) of electrical energy annually. It was also found that the optimum configuration had 0.024 GJ of annual energy losses due to the effects of cell temperature rise.
机译:在本文中,研究了与反射镜集成的光伏面板的性能进行了研究。在这方面,建模了面板和镜面倾斜角度和镜像长度对系统性能的影响。还考虑了细胞温度升高。此外,通过3D模型,详细研究了照明和阴影状态,并呈现和建模所有可能的条件。结果模型可以计算面板上的入射太阳能量和每时每刻的产生电力。此金额取决于系统配置和容量及其位置。 250-W光伏面板和德黑兰市已被认为是计算模型结果的计算基础。通过采用遗传算法方法,已经发现最佳配置具有69.084度,为面板和镜子的倾斜角度分别为2米的镜子长度。此配置每年可以生成2.38 GJ(613.89千瓦时)的电能。还发现,由于细胞温度升高的影响,最佳配置具有0.024 GJ的年能损失。

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