利用微控制器对各种太阳能光伏电池/模块进行了独特的表征和性能评估模型

Rakesh Naskar, P. Das, R. Mandal
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引用次数: 2

摘要

在太阳能组件制造过程结束时,在每个单独的太阳能组件的不同照明下进行I-V测量,以确定其在最大功率点和ISC和VOC点的电流Imp和电压Vmp,其中功率将为零,功率最大值将出现在两者之间。填充系数(FF)本质上是太阳能销售质量的衡量标准。当使用传统方法从I-V特性计算太阳能电池的性能时,发现噪声使I-V曲线在VOC附近呈轻微之字形,而在曲线的“膝盖”附近呈大幅度之字形。定义太阳能组件参数的确切值称为组件的表征。因此,本文试图利用自动电子负载调节器最小化I-V曲线的噪声以获得最高的输出功率,并利用ATMEGA单片机从I-V曲线绘制中找出ISC和VOC点的真实值。
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A unique model of Characterization & performance estimation of various solar photovoltaic cells/modules using Microcontroller
At the end of the solar module manufacturing process, an I-V measurement is performed under different illumination of each individual solar module to determine its current Imp and voltage Vmp at the maximum power point and the ISC and VOC points, where the power will be zero and the maximum value of power will occur between the two. The Fill Factor (FF) is essentially a measure of quality of the solar sell. When calculated the performance of the solar cell from I-V Characteristics using the conventional method, it was found that noise caused the I-V curves to zigzag slightly near the VOC and to zigzag widely near the `knee' of the curve. Defining the exact value of solar Module's parameters is called Module's Characterization. So in this paper the authors are tried to minimized the noise of I-V curve to get the highest power output using Automatic electronic load regulator and also find out a real value of ISC and VOC points from the I-V curve plotting using ATMEGA Microcontroller.
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