基于混合控制的高精度低耗太阳跟踪

Q1 Mathematics
Merouan Belkasmi, K. Bouziane, M. Akherraz, Mohammed El Ouahabi, T. Sadiki, M. Faqir
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引用次数: 0

摘要

集中器光伏(CPV)系统需要一个高精度的双轴太阳跟踪系统来跟踪太阳位置。这是因为,一旦指向角位置误差超过小于1°的最大接受角,带有集中器透镜的小型太阳能多结电池产生的功率就会急剧下降。本文实现了一种基于优化混合控制的太阳跟踪单元,以提高CPV系统中双轴跟踪单元的跟踪精度和反应性。实现并测试了混合控制系统,该系统包括两种基于闭环算法的LDRs传感器通信策略和一种基于天文方程的开环算法。与混合式太阳跟踪器相关的硬件部分的电路经过精心设计,使得太阳跟踪在全天晴朗和多云的天空中沿着方位轴和仰角轴继续。我们首先报告了闭环和开环跟踪精度的实验分析和比较结果。在此基础上,提出并实现了混合求解策略。所开发的混合太阳能跟踪器的驾驶员消耗结果表明,白天的总能量沿高度轴为3.66Wh,沿方位轴为3.03Wh,功耗较低。混合控制沿两个轴的跟踪精度小于±0.4°。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sun Tracking Based on Hybrid Control with High Accuracy and Low Consumption
The concentrator photovoltaic (CPV) system needs a dual-axis sun tracking system with high precision to track the sun position. This is because the power generated by small solar multijunction cells with concentrators lens drops dramatically once the pointing angle position error exceeds maximum acceptance angle of less than 1°. In this present paper, a sun tracking unit based on optimized Hybrid control has been realized to improve the tracking accuracy and reactivity of a dual-axis tracking unit in CPV systems. The hybrid control system including two strategies based on closed-loop algorithm to communicate with LDRs sensors as well as an open loop algorithm based on astronomical equations is implemented and tested. The circuit of the hardware part related to the hybrid sun tracker has been carefully designed in such way the sun tracking continues along azimuth axis and the elevation axis in both clear and cloudy sky throughout the day. We first report the results of experimental analyses and comparison of tracking accuracy between the closed and open loop. Based on these results, the strategy of hybrid solution is proposed and implemented. The results of drivers consumption of the developed hybrid solar tracker indicate a low power consumption with a total energy of 3.66Wh along altitude axis and 3.03Wh along azimuth axis in the day. The tracking accuracy of hybrid control is less than ±0.4° along the two axes.
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来源期刊
International Review of Automatic Control
International Review of Automatic Control Engineering-Control and Systems Engineering
CiteScore
2.70
自引率
0.00%
发文量
17
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