Single and double diode models for conventional mono-crystalline solar cell with extraction of internal parameters

Ferdaous Masmoudi, F. B. Salem, N. Derbel
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引用次数: 31

Abstract

In this study, the cell behavior in a photovoltaic (PV) module will be investigated by using two electrical characteristics models of mono-crystalline solar cells: (i) the single diode model, and (ii) the double diode model. Several of the used models parameters are not provided by the manufacturer. The identification of internal parameters of the PV cell is performed by means of research algorithms using data provided by the manufacturer datasheet. Moreover, influences and effects of temperature and irradiance level variation are studied then compared for the proposed models. Simulations Results are compared to those provided by JAC M5SF-2 cell's datasheet. Then, the accuracies of proposed models are validated against experimental tests under the real operating conditions. Results show an acceptable and close similarity with the data issued by the manufacturer data. Identification algorithms, based on the manufacturer data, can thus, be very useful for researchers or engineers to define quickly and easily the internal parameters of any solar cell.
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传统单晶太阳能电池的单二极管和双二极管模型及内部参数的提取
在本研究中,光伏(PV)组件中的电池行为将通过使用单晶太阳能电池的两种电特性模型来研究:(i)单二极管模型,(ii)双二极管模型。一些使用的模型参数没有由制造商提供。光伏电池内部参数的识别是通过使用制造商数据表提供的研究算法进行的。此外,还研究了温度和辐照水平变化对模型的影响和效果。仿真结果与JAC M5SF-2电池的数据表进行了比较。然后,通过实际工况下的实验验证了所提模型的准确性。结果显示与制造商发布的数据具有可接受的和接近的相似性。因此,基于制造商数据的识别算法对于研究人员或工程师来说非常有用,可以快速轻松地定义任何太阳能电池的内部参数。
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