Oliveira Fernanda, Cruz Gustavo, Barbosa Maria, Junior Fernando, Lima Ricardo, Gómez-Malagón Luis
Departament of Electrical Energy Systems, University of Technology Sydney, 15 Broadway, Ultimo, NSW 2007, Australia.
Postgraduate Program in Systems Engineering, Polytechnic School of Pernambuco, University of Pernambuco, Recife 50720-001, PE, Brazil.
Sensors (Basel). 2024 May 21;24(11):3269. doi: 10.3390/s24113269.
A solar position sensor is an essential optoelectronic device used to monitor the sun's position in solar tracking systems. In closed-loop systems, this sensor is responsible for providing feedback signals to the control system, allowing motor adjustments to optimize the angle of incidence and minimize positioning errors. The accuracy required for solar tracking systems varies depending on the specific photovoltaic concentration. In the case of the concentrator photovoltaic (CPV), it is normally essential to track the sun with a position error of less than ±0.6°. To achieve such precision, a proposed sensor configuration composed of low-cost embedded electronics and multifiber optical cable is subjected to characterization through a series of measurements covering range, sensitivity, and resolution. These measurements are performed in controlled indoor environments as well as outdoor conditions. The results obtained exhibit a resolution of 2.6×10-3 degrees when the sensor is illuminated within its designated field of view of ±0.1°, particularly in external conditions. Considering the performance demonstrated by the proposed solar position sensor, coupled with its straightforward modeling and assembly compared to position sensors documented in the literature, it emerges as a promising candidate for integration into solar tracking systems.
太阳位置传感器是一种用于监测太阳在太阳能跟踪系统中位置的重要光电器件。在闭环系统中,该传感器负责向控制系统提供反馈信号,以便电机进行调整,优化入射角并将定位误差降至最低。太阳能跟踪系统所需的精度因具体的光伏聚光情况而异。对于聚光光伏(CPV)而言,通常必须以小于±0.6°的位置误差跟踪太阳。为实现这种精度,一种由低成本嵌入式电子设备和多光纤光缆组成的传感器配置,通过一系列涵盖范围、灵敏度和分辨率的测量进行特性表征。这些测量在受控的室内环境以及室外条件下进行。当传感器在其指定的±0.1°视场内被照亮时,特别是在外部条件下,所获得的结果显示分辨率为2.6×10-3度。考虑到所提出的太阳位置传感器所展示的性能,以及与文献中记载的位置传感器相比其简单的建模和组装方式,它成为集成到太阳能跟踪系统中的一个有前景的候选方案。