Performance Analysis of CdTe Based PV Array Using Parameter Extraction Techniques

Debamita Roy, I. Mal, D. P. Samajdar
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Abstract

Designing of Photovoltaic (PV)modules are essential as it can successfully predict the deliverable output power form the module under variable environmental conditions. The paper presents a detailed step by step modeling of a solar array delivering a maximum output power of 50 kW. Two different parameter estimation techniques are used to extract the unknown parameters in a single diode model of a solar cell. The two sets of unknown parameters are then used to plot the I-V and P-V characteristic curves at STC for a PV Module FS- 4105–2 (CdTe based PV Module). Both the models use different expressions for reverse saturation current and photogenerated current. The effect of the variation of temperature and irradiance on the P-V and I-V has been studied and compared using the two techniques. The analytical modeling and realization of the PV Module is done using MATLAB software.
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基于参数提取技术的CdTe基光伏阵列性能分析
光伏组件的设计至关重要,因为它可以成功地预测组件在不同环境条件下的输出功率。本文给出了一个最大输出功率为50千瓦的太阳能电池阵列的详细的逐步建模。采用两种不同的参数估计技术提取太阳能电池单二极管模型中的未知参数。然后使用这两组未知参数绘制PV组件FS- 4102 - 2(基于CdTe的PV组件)在STC处的I-V和P-V特性曲线。两种模型对反向饱和电流和光生电流采用不同的表达式。研究并比较了温度和辐照度的变化对P-V和I-V的影响。利用MATLAB软件对光伏组件进行了分析建模和实现。
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