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Solar Cell Module Installation Optimization and Evaluation of Power Conversion Simulation

机译:太阳能电池模块安装优化和功率转换仿真评估

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This research investigates the optimum solar panel installation angle for fixed solar panels to obtain the maximum annual energy collection at different latitudes using simulation equations. The simulated results were compared with the recorded data from the Weather Bureau for Taipei, Chiayi and Hungchun, respectively. The errors for daytime fair weather were all within 10%. Simulations were also performed for different solar panel inclination angles and directional angles under different latitudes to obtain the maximum overall annual solar energy. The simulation results showed that when the solar panel faces directly south, the optimum installation angle is 20 degrees for Taipei, and 17 degrees for both Chiayi and Hungchun. When the southern directional angle exceeded 29 degrees toward the east (or west) in Chiayi, the suggested optimum inclination angle was 0 degrees. Using the solar panel's photonic characteristics, the maximum power point for the solar panel under different degrees of illumination is discussed. The simulated energy results are converted into electrical power.
机译:本研究调查了固定太阳能电池板的最佳太阳能电池板安装角度,以使用模拟方程获得不同纬度的最大年度能量集合。将模拟结果与台北,嘉义和鸿春的恶魔局的记录数据进行了比较。白天公平天气的错误均为10%。在不同纬度下的不同太阳能电池板倾斜度和方向角度也进行了模拟,以获得最大的整体年度太阳能。仿真结果表明,当太阳能电池板直接面向南方时,台北的最佳安装角度为20度,恰伊和鸿春均为17度。当南方方向角度超过嘉义的东(或西)29度时,建议的最佳倾斜角度为0度。讨论了太阳能电池板的光子特性,讨论了太阳能电池板的最大功率点在不同程度的照明下。模拟能量结果被转换为电力。

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