PV module single–diode model, parameter extraction of polycrystalline and amorphous solar panel

Chabiya Denis Terrang, Bashiru Kayode Sodipo, Muhammad Sani Abubakar
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引用次数: 1

Abstract

Solar energy is a good option to replace the fossil driven energy market. Research is still ongoing to make solar technologies more efficient and affordable. Modeling is key in this area. Parameter extraction of PV modules enables easier simulation and accurate modeling of various PV cells/modules. The parameters are namely: (I) the photo generated current, ????????ℎ, (II) the reverse saturation current, ????????, (III) ideality factor, n, (IV) the series resistance, ???????? and (V) the shunt resistance, ????????ℎ. This research work extracted the equivalent circuit parameters of polycrystalline and amorphous solar panels. An 11 V polycrystalline and 6 V amorphous solar panels were illuminated with a 500 W halogen lamp to generate I-V characteristics with the aid of a data capture device. A Matlab/Simulink model was modified using the single diode equation to model the two test solar panels. The Orthogonal Distance Regression (ODR) method from the origin lab was adopted to solve the nonlinear/transcendental equation of the solar cell/module with the single diode model to determine the parameters of a polycrystalline and amorphous solar panel. The results show a variation in the parameters of the two test solar panels. The polycrystalline indicates a higher ????????ℎ and ????????ℎ with low ???????? and n values, which result to high efficiency. The amorphous panel shows higher n and ???????? values, which makes it have low efficiency. The polycrystalline solar panel has smaller residual sum of square (RSS) which makes it a better retrieval while the amorphous solar panel has a higher residual sum of square (RSS), the ODR method for polycrystalline was more accurate than the amorphous solar panel as observed from the validation results of the two test panels.
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光伏组件单二极管模型,多晶和非晶太阳能电池板参数提取
太阳能是替代化石燃料驱动的能源市场的一个很好的选择。研究仍在进行中,以提高太阳能技术的效率和价格。建模是这个领域的关键。光伏组件的参数提取使各种光伏电池/模块的仿真和准确建模更容易。参数为:(1)照片生成电流,????????, (II)反向饱和电流,????????(III)理想因数,n, (IV)串联电阻,????????(五)分流电阻,???????? 。本研究工作提取了多晶和非晶太阳能电池板的等效电路参数。采用500 W卤素灯照射11 V多晶和6 V非晶太阳能电池板,借助数据采集装置产生I-V特性。利用单二极管方程对Matlab/Simulink模型进行了修改,对两个测试太阳能电池板进行了建模。采用原始实验室的正交距离回归(ODR)方法,求解单二极管模型太阳电池/组件的非线性/超越方程,确定多晶和非晶太阳能电池板的参数。结果表明,两种测试太阳能电池板的参数存在差异。多晶表示更高的????????和????????低????????和n值,效率高。非晶态面板显示出较高的n和????????价值,这使得它的效率很低。多晶太阳能电池板的残差平方和(RSS)较小,检索效果较好,而非晶太阳能电池板的残差平方和(RSS)较高,从两种测试板的验证结果可以看出,多晶太阳能电池板的ODR方法比非晶太阳能电池板更准确。
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