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Computer vision and photosensor based hybrid control strategy for a two-axis solar tracker - Daylighting application

机译:基于计算机视觉和光电传感器的双轴太阳能跟踪器混合控制策略 - 日光应用

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摘要

This paper deals with a computer vision and photosensor based two-axis solar tracking system for an active daylighting system. The real-time image processing was performed by using a Raspberry Pi 4 controller, and processed data were used as an input of an ATmega128 microcontroller to track the sun's path. An active daylighting system requires a higher concentration of sunlight with an acceptable accuracy in different weather conditions. Alone, an image based or photosensor based control strategy cannot fulfill both requirements. Successful integration of two different feedback mechanisms could overcome the tracking difficulties. The system was composed of Raspberry Pi 4 and ATmega128 controllers, a camera, electronic circuits, and stepper motors. The proposed control system could distinguish the objects (e.g., sun or clouds) in front of the camera, and process the data required to run the solar tracker. The integration of extra photosensors and the camera was able to avoid the cloud disturbance. To investigate the efficacy of the solar tracker, it was integrated with the optical fiber cable to transmit harvested daylight for an indoor illumination.
机译:本文涉及基于计算机视觉和光电传感器的双轴太阳能跟踪系统,用于有源日光系统。通过使用Raspberry PI 4控制器执行实时图像处理,并使用处理的数据作为ATMEGA128微控制器的输入,以跟踪SUN的路径。活跃的日光照明系统需要更高浓度的阳光,在不同的天气条件下具有可接受的精度。单独,基于图像的图像或基于光电传感器的控制策略不能满足两个要求。成功集成了两个不同的反馈机制可以克服跟踪困难。该系统由Raspberry Pi 4和Atmega128控制器,相机,电子电路和步进电机组成。所提出的控制系统可以将对象(例如,太阳或云)区分开在相机前面,并处理运行太阳能跟踪器所需的数据。额外的光电传感器和相机的集成能够避免云扰动。为了研究太阳能跟踪器的功效,它与光纤电缆集成在光纤电缆中,以传输收获的日光以进行室内照明。

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