无传感器的双轴太阳角度跟踪系统

Q3 Energy
Z. Er, Elif Balcı
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引用次数: 11

摘要

由于全球化的迅猛发展,对电力的需求和能源的利用也日益增加。为了满足电力需求,包括太阳能系统在内的各种可再生能源被用来满足这一充足的需求。为了消除太阳能系统中光伏板的效率限制,有几种太阳能跟踪的方法。本文设计了一种双轴太阳跟踪系统,并对其进行了多次测试,实现了对太阳位置的跟踪。本文研究设计了一种无传感器驱动、少机械结构的太阳能电池板系统。由于固定的太阳能电池板不会在一天中每时每刻都在最高的太阳辐射下工作;有太阳能跟踪器的移动系统可以考虑工作效率更高。针对固定式太阳能电池板系统太阳辐射接收能力有限的问题,设计了一种新型高效太阳能电池板。构造并制作了具有两轴的光伏跟踪机构。通过多决策准则对系统部件进行了精心选择,并通过计算太阳角度确定了系统的边界条件。本文介绍了上述设计结构细节和跟踪器的工作结果,但没有任何传感器,其中PV面板的运动被控制到可编程逻辑控制器(PLC)的编程设置。为了完成这项技术任务,所有的电子电路和必要的软件都是在工业和伊斯坦布尔技术大学的一些机会下设计和开发的。研制的新型跟踪器工作效果良好,并进行了多项实验研究。实验研究结果表明,新设计具有最佳性能。结果表明,通过计算,系统对纵轴运动的敏感性为1度。根据所获得的研究结果,可以得出结论,制作的太阳能双轴跟踪系统的新设计在提高效率方面具有几个优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual axis solar angle tracking system without any sensor
Owing to swift and irrepressible increase in globalization, the power requirement and energy utilization are also increasing day by day. To compensate the power needs, various renewable energy sources which consist solar energy systems are been used in order to satisfy this ample demand. In order to eliminate the efficiency limits of photo-voltaic panel in a solar energy system, there are several methods by solar tracking. In this study, a dual axis solar tracker system is newly designed and tested at several times to track the sun position. A new approach to solar panel systems has been investigated and designed in this study via motivation of no sensor and less mechanical construction. Since a fixed solar panel will not work with the highest solar radiation at every moment of a day; a mobile system which has solar tracker can consider that it will work more efficiently. Owing to the restricted solar radiation reception of fixed panel systems for, a new fabricate-more efficient solar panel has been designed. Photo-voltaic tracking mechanism having two axes has been constructed and fabricated. The parts of the system have selected carefully via the multi decision criteria and boundary conditions of the system has settled by calculating solar angles. This paper presents the mentioned design construction detail and -however there is no any sensor- working results of the tracker whereby the movement of a PV panel was controlled to setting of programming of a programmable logic-controller (PLC). To perform the technical task, all electronic circuits and necessary software have been designed and developed with some opportunities in industry and Istanbul Technical University. Fabricated this new design tracker works very well and it is tested with several experimental studies. The results of the experimental studies represent best performance of the fabricated new design. Due to results, sensibility for vertical axis movement of the system is stated 1 degree via calculation. Based on the obtained results this study can conclude that the fabricated new design for a solar dual axis tracking system offers several advantages concerning the improvement of efficiency.
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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