单轴和双轴太阳跟踪系统的控制

Mohamed T. Taha, Eyad O. Mohamed, Ayman M. Abdolsalam, A. B. Taha
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引用次数: 0

摘要

本文以Arduino为主要控制单元,利用MATLAB/SIMULINK包实现单轴太阳跟踪(SAST)和双轴太阳跟踪(DAST),提高太阳能系统的整体输出和稳定性。这种组合使系统更强大,有助于节省面板,提高太阳能的输出或生产力。跟踪的过程使电池板全天产生最大的能量,因为它使电池板无论走到哪里都跟着太阳。根据跟踪系统的类型,从面板提取的电压和功率将大于固定位置生成。完成工作后发现:双轴太阳跟踪系统将静止位置的输出提高了3.3%,单轴太阳跟踪系统将静止位置的输出提高了2.6%。输出百分比低是因为我们使用的实验细胞不准确,这是因为我们的论文实际上并不是对细胞的改进,而是一个控制细胞的系统。对于该系统来说,它证明了它比普通系统产生更多功率的效率。并且一旦使用了一个精确的、有能力的单元,输出将会得到进一步的提高,因为使用了MATLAB,使我们的系统在计算上更加准确,能够更好地分析信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control of Single-Axis and Dual-Axis Solar Tracking System
This paper concerns with improving the overall output and stability of the solar system by Single-Axis Solar Tracking (SAST) and Dual-Axis Solar Tracking (DAST) by using MATLAB/SIMULINK package with the Arduino as the main control unit in the paper. This combination makes the system more powerful, helps in saving the panel and improve the output or productivity of solar power. The process of tracking makes the panel produce its maximum power all over the day because it makes the panel follow the sun where ever it goes. Voltage and power extracted from the panel will be greater than the stationary position generation depending on the type of tracking system. After finishing the work, it was discovered that: the dual-axis solar tracking system had improved the output of the stationary position by 3.3% and the single-axis solar tracking system had improved the output of the stationary position by 2.6%. The output percentage is low because we used an experimental cell which is not accurate, that is because our paper is not actually an improvement to the cell, but a system that controlling the cell. For the system, it proved its efficiency in producing more power than normal systems. And once using an accurate and capable cell, the output will be further improved, because using MATLAB, which made our system accurate in calculations, and able to analyze information in a better way.
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