Simulation and validation of the performance of a polycrystalline photovoltaic module

Usman Abdullahi, Muhammad Sani Abubakar, A. Shuaibu
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Abstract

The performance of a solar module is described by its Current-Voltage (I-V) and Power-Voltage (P-V) curves, it is therefore necessary to generate these curves in order to validate the parameters of the module namely Short Circuit Current, Open Circuit Voltage, Maximum Power, Current and Voltage at Maximum Power Points, Fill Factor, and Efficiency. This study highlights two methods of generating I-V and P-V curves from a 30W sunshine (AP-PM-30) module. The methods include a computer simulation using MATLAB/Simulink software and an experimental procedure at different values of Irradiance and cell temperature. Findings from this study show that an increase in irradiance at constant cell temperature of the solar module results to significant increase in the current produced but slight increase in voltage. Consequently, the power output of the solar module also increases, while increase in cell temperature at constant irradiance decreases the voltage but slightly increases the current produced by the module but power output decreases. Therefore, these explain the influence of irradiance and cell temperature on the performance of a photovoltaic module.
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模拟和验证多晶硅光伏组件的性能
太阳能组件的性能由其电流-电压(I-V)和功率-电压(P-V)曲线来描述,因此有必要生成这些曲线,以验证组件的参数,即短路电流、开路电压、最大功率、最大功率点的电流和电压、填充因子和效率。本研究重点介绍了从 30 瓦阳光模块(AP-PM-30)生成 I-V 和 P-V 曲线的两种方法。这两种方法包括使用 MATLAB/Simulink 软件进行计算机模拟,以及在不同辐照度值和电池温度下进行实验。研究结果表明,在太阳能电池组件电池温度不变的情况下,辐照度的增加会导致产生的电流显著增加,但电压略有增加。因此,太阳能电池组件的功率输出也会增加,而在辐照度不变的情况下,电池温度的增加会降低电压,但会略微增加电池组件产生的电流,但功率输出会降低。因此,这些说明了辐照度和电池温度对光伏组件性能的影响。
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