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Optimal Tilt Angle Determination for PV Panels Using Real Time Data Acquisition

机译:PV面板使用实时数据采集的最佳倾斜角度测定

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摘要

Solar energy is one of the promising renewable energy sources which has the potential to meet the future energy demand around the world. To maximize the irradiance fall, solar panels are generally equipped with a motor tracking system and are placed at a specific tilt angle. However, tracking methods are not cost‐effective and a fixed tilt angle is not productive. This study proposes a method for harnessing maximum output from photovoltaic (PV) panels throughout the year by determining the optimal tilt angle. The investigation is performed on real‐time solar PV panels of 5 kWp rated capacity installed at 10°, 20°, 25°, 30°, and 40° angle on the rooftop of engineering institute situated at Chandigarh, India. The real‐time power generation response for a year is used to find the optimal tilt angle. The results obtained from the practical setup are validated by comparing it with the simulation results of the regression analysis. In addition, the impact of the optimal angle on total power generation and carbon emissions is analyzed. The results reveal that the proposed approach is quite effective to increase the power generation of PV panels up to 7–8% and can be practically implemented in any location throughout the world. This study determines the optimal tilt angle of the PV panel for the Chandigarh region in India. The analysis reveals that total power generation through PV generating units is increased by 7–8% in a year by placing the PV panels at optimal angles compared to fixed angle at the studied location during different times of the year.
机译:太阳能是有前途的可再生能源之一,有可能满足世界各地的未来能源需求。为了最大化辐照度下降,太阳能电池板通常配备有电动机跟踪系统并且放置在特定的倾斜角度。然而,跟踪方法不具有成本效益,并且固定的倾斜角不是生产性的。该研究提出了一种通过确定最佳倾斜角度来利用全年从光伏(PV)面板的最大输出的方法。在5 kWp额定容量的实时太阳能光伏面板上进行了调查,安装在10°,20°,25°,30°,位于印度昌迪加尔的工程学院屋顶上,40°角。一年的实时发电响应用于找到最佳倾斜角度。通过将其与回归分析的仿真结果进行比较来验证从实际设置中获得的结果。此外,分析了最佳角度对总发电和碳排放的影响。结果表明,建议的方法非常有效地增加高达7-8%的光伏面板的发电,并且可以在世界各地的任何位置实际实施。本研究确定了印度昌迪加地区光伏面板的最佳倾斜角。该分析表明,通过在一年中的学习位置的定位位置的固定角度将PV面板放置PV面板,通过PV产生单元通过PV产生单元的总发电量增加了7-8%。

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