$I_'/> New Analytical Models for Cardinal Points of Photovoltaic Solar Module Operating Outdoor under Arbitrary Conditions
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New Analytical Models for Cardinal Points of Photovoltaic Solar Module Operating Outdoor under Arbitrary Conditions

机译:任意条件下户外运动户外光伏太阳能模块的基本点新分析模型

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In this paper, we present new mathematical models describing the variations of short-circuit current $I_{sc}$, open-circuit voltage $V_{oc}$, maximum power current $I_{mpp}$ and maximum power voltage $abla_{mpp}$ of photovoltaic solar module, operating outdoor under arbitrary conditions, as functions of irradiance and temperature. We test and validate these mathematical models using meteorological and photovoltaic data measured by NREL researchers for solar modules operating outdoor at Cocoa (Florida), Eugene (Oregon) and Golden (Colorado) during 2011. We find very good agreement between optimized values of cardinal points coordinates and experimental data. This allows us to predict with a high degree of accuracy output power, conversion efficiency and fill factor of single-crystalline, multicrystalline and amorphous photovoltaic modules.
机译:在本文中,我们提出了描述了描述短路电流变化的新数学模型 $ i_ {sc} $ < / tex>, 开路电压 $ v_ {oc} $ < / tex>,最大功率电流 $ i_ {mpp} $ < / tex> 和最大电源电压 $ nabla_ {mpp} $ 光伏太阳能模块,在任意条件下运行户外,作为辐照度和温度的功能。我们使用NRER研究人员测量的气象和光伏数据来测试和验证这些数学模型,用于在2011年在Cocoa(佛罗里达州),尤金(俄罗斯州)和金色(科罗拉多州)在Cocoa(佛罗里达州)和金色(Colorado)之间的太阳能模块测量。我们在主体的优化价值之间找到了非常好的同意坐标和实验数据。这使我们可以预测单晶,多晶硅和非晶光伏模块的高精度输出功率,转换效率和填充系数。

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