Comparative analysis of single-axis solar tracker performance with and without reflector under various weather conditions

Vicky Andria Kusuma, Aji Akbar Firdaus, S. S. Suprapto, Risty Jayanti Yuniar, Hanif Trimulya, Yun Tonce Kusuma Priyanto
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Abstract

This research explores a sun tracking system for solar panels that affects the power output of the panels. To address this, a unidirectional sun tracking system is implemented to ensure the solar panels are perpendicular to the sun, thus optimizing solar radiation. Additionally, reflectors are integrated to capture more sunlight. This research aims to design the system of unidirectional sun tracking to enhance the power output generated by solar panels and compare its performance with stationary (static) solar panels. The results demonstrate that the system of sun tracking improves the power output of solar panels. However, when reflectors are used in conjunction with the sun tracking system, no significant increase in power output is observed. Moreover, solar panels equipped with the unidirectional sun tracking system exhibit a power increase of 52.06 Watts compared to stationary solar panels. This research indicates that employing a unidirectional sun tracking system with the addition of reflectors does not enhance power output but instead reduces it due to the increased temperature effect caused by the sunlight reflection from the added reflectors.
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各种天气条件下带反射器和不带反射器的单轴太阳能跟踪器性能比较分析
这项研究探讨了影响太阳能电池板输出功率的太阳能电池板太阳跟踪系统。为解决这一问题,采用了单向太阳跟踪系统,以确保太阳能电池板与太阳垂直,从而优化太阳辐射。此外,还集成了反射器,以捕捉更多的阳光。本研究旨在设计单向太阳跟踪系统,以提高太阳能电池板的发电量,并比较其与固定(静态)太阳能电池板的性能。结果表明,太阳跟踪系统提高了太阳能电池板的功率输出。然而,当反射器与太阳跟踪系统结合使用时,并没有观察到功率输出的显著增加。此外,与固定式太阳能电池板相比,配备单向太阳跟踪系统的太阳能电池板的功率增加了 52.06 瓦。这项研究表明,采用单向太阳跟踪系统并加装反射器,不仅不会提高功率输出,反而会降低功率输出,原因是加装反射器后,太阳光的反射会增加温度效应。
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