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Intelligent sun-tracking system based on multiple photodiode sensors for maximisation of photovoltaic energy production

机译:基于多个光电二极管传感器的智能太阳跟踪系统,可最大程度地提高光伏发电量

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To maximise the energy collected by a given photovoltaic system (PVS), it is important to track the position of the sun so that the PV panels are exposed to the maximum global radiation at any given time. Thus, it is useful to determine the direction of the maximum global radiation, which does not correspond with the condition of orthogonality between the plane of the array and the beam component of the solar radiation. Thus, it is worthwhile to investigate a low-cost solar radiation sensing system that can determine this direction. The proposed system consists of a structure of nine photodiodes (FDs); a suitable analysis of the output signals calculates the azimuth and solar height angles, which are related to the direction of maximum solar irradiance. This paper reports the development of hardware (HW) and software (SW) for a prototype system, which is called SoliSector. Outdoor experimental results regarding testing and calibration of the proposed system are also reported.
机译:为了最大程度地利用给定的光伏系统(PVS)收集的能量,跟踪太阳的位置非常重要,以便在任何给定时间使PV面板暴露于最大的整体辐射下。因此,确定最大整体辐射的方向是有用的,该方向与阵列的平面和太阳辐射的光束分量之间的正交性条件不对应。因此,值得研究一种可以确定该方向的低成本太阳辐射感测系统。拟议的系统由九个光电二极管(FD)的结构组成。对输出信号进行适当的分析,可以计算出方位角和太阳高度角,它们与最大太阳辐照度的方向有关。本文报告了称为SoliSector的原型系统的硬件(HW)和软件(SW)的开发情况。还报告了有关建议系统的测试和校准的室外实验结果。

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