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Modeling of multi-junction solar cells for maximum power point tracking to improve the conversion efficiency

机译:用于最大功率点跟踪的多结太阳能电池建模,以提高转换效率

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This paper presents the basic principles of solar cells/ panels and explores its different models, such as single and double diode models. The main purpose of this research is to confirm that the principle of multi-junction solar cell (MJSC) operation to improve the conversion efficiency. To perform this simulation, single and double diode models have been developed. The process was ultimately utilized to find the influence of irradiance and temperature in electricity generation. In addition, the ideality factor and the impact of resistance on conversion efficiency also have been investigated. Maximum power point tracking (MPPT) method was used and optimized to improve the MJSCs performance for conversion efficiency improvement. The I-V and P-V curves show that double diode model produced more accurate results than the single diode model. The MJSCs expand the band gap and reduce the temperature influence in simulation to increase the energy conversion efficiency using the optimized MPPT method.
机译:本文介绍了太阳能电池/面板的基本原理,并探讨了其不同的模型,例如单二极管和双二极管模型。这项研究的主要目的是确认多结太阳能电池(MJSC)的工作原理以提高转换效率。为了执行此仿真,已经开发了单二极管和双二极管模型。该过程最终被用于发现辐照度和温度对发电的影响。此外,还研究了理想系数和电阻对转换效率的影响。使用了最大功率点跟踪(MPPT)方法并对其进行了优化,以提高MJSC的性能,从而提高转换效率。 I-V和P-V曲线表明,与单二极管模型相比,双二极管模型产生的结果更准确。 MJSC使用优化的MPPT方法扩大了带隙并减少了仿真中的温度影响,从而提高了能量转换效率。

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