一种新型太阳能跟踪传感器的研制与性能测试

IF 1 4区 工程技术 Q4 INSTRUMENTS & INSTRUMENTATION
Jianjun Lan
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引用次数: 0

摘要

针对光伏发电中光电跟踪精度低的问题,提出并设计了一种基于图像识别的太阳能跟踪传感器。该传感器可以直接输出与太阳的角度偏差,并详细分析了其机械结构和工作原理。我们使用高精度摄像机采集投影仪表面两个槽的图像,并使用霍夫变换识别光缝的图像。得到两个槽的线性方程后,求出交点坐标,实现太阳高度和方位角的计算。我们改进了Hough变换方案,使用凹槽的骨架图像代替边缘图像。经实践证明,该方案的改进有效地提高了检测精度。利用标定测试板对传感器进行了测试,实验结果表明,该方案可以实现方位角和高度的测量,精度为0.05°,可以满足光伏发电等多种光电跟踪实现中太阳能跟踪的检测精度要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and performance test of a novel solar tracking sensor
A new solar tracking sensor based on image recognition is proposed and designed to solve the problem of low accuracy of photoelectric tracking in photovoltaic power generation. The sensor can directly output its angular deviation from the sun, and its mechanical structure and working principle are analysed in detail. We use a high-precision camera to collect the image of the two slots on the projector surface and use the Hough transform to identify the image of the light seam. After obtaining the linear equation for the two slots, the coordinate of the intersection point is found, and the calculation of the solar altitude and azimuth can be realized. We have improved the Hough transform scheme by using the skeleton image of the slots instead of the edge image. The improvement of the scheme has been proved to effectively improve the detection accuracy. A calibration test board is used to test the sensor and experimental results show that the scheme can achieve the measurement of azimuth and altitude with the accuracy of be 0.05 ° , which can meet the detection accuracy requirements of the solar tracking in photovoltaic power generation and many other photoelectric tracking implementations.
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来源期刊
Metrology and Measurement Systems
Metrology and Measurement Systems INSTRUMENTS & INSTRUMENTATION-
CiteScore
2.00
自引率
10.00%
发文量
0
审稿时长
6 months
期刊介绍: Contributions are invited on all aspects of the research, development and applications of the measurement science and technology. The list of topics covered includes: theory and general principles of measurement; measurement of physical, chemical and biological quantities; medical measurements; sensors and transducers; measurement data acquisition; measurement signal transmission; processing and data analysis; measurement systems and embedded systems; design, manufacture and evaluation of instruments. The average publication cycle is 6 months.
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