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A Low-Cost Sun Tracking System Based on Image Processing and a Robot Arm

机译:基于图像处理和机械臂的低成本太阳跟踪系统

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Concentrated photovoltaics (CPV) envisages the use of optical systems built of lenses and/or mirrors to focus sunrays in highly efficient cells, thus reducing the amount of active material while increasing efficiency and energy production. When high concentration is desired, precise tracking systems must be implemented, as only direct radiation will contribute to energy conversion. This requires the development of tracking mechanisms that be compatible with the low angular displacements allowed. The higher the desired concentration, the higher the complexity and cost of typical tracking systems. This paper proposes a low-cost tracking mechanism, built by a webcam on a robotic arm, with distinct tracking modes implemented. The architecture and hardware and software components of the system are described, and its performance is assessed in clear sky and partial cloudy days. The system performance is more affected by the precision of the stepper motors used in the drive of the robotic arm, but a viable tracker, that can control large tracking structures, is built and demonstrated.
机译:集中式光伏(CPV)设想使用由透镜和/或镜构成的光学系统将阳光聚焦在高效电池中,从而减少活性物质的数量,同时提高效率和产生能量。当需要高浓度时,必须采用精确的跟踪系统,因为只有直接辐射才有助于能量转换。这需要开发与允许的低角度位移兼容的跟踪机构。所需浓度越高,典型跟踪系统的复杂性和成本就越高。本文提出了一种低成本的跟踪机制,该机制是通过网络摄像头在机械臂上构建的,并实现了不同的跟踪模式。描述了系统的体系结构以及硬件和软件组件,并在晴朗的天空和部分多云的天气中评估了其性能。系统性能受机械臂驱动中使用的步进电机精度的影响较大,但已构建并演示了可控制大型跟踪结构的可行跟踪器。

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