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Photovoltaic cell modeling for maximum power point tracking using MATLAB/Simulink to improve the conversion efficiency

机译:使用MATLAB / Simulink进行光伏电池建模以实现最大功率点跟踪,以提高转换效率

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This paper focuses on the behavior of maximum power point tracking (MPPT) on photovoltaic (PV) cell systems using MATLAB/Simulink software. The PV cells can offer better simulation results when a double-exponential type, i.e., double-diode model is used. The reason, it is more accurate with the real testing condition even though the efficiency is a bit less. This confirms that theoretical single-diode model still require more improvements. In addition, multijunction solar cell also investigated to obtain its maximum performance compared with the conventional silicon PV cell. The obtained results show that the tandem (or multijunction) cell can provide almost 3-times maximum power compared to the conventional PV cell. Therefore, the multijunction/ tandem PV cells can produce higher power throughout the sunny day due to the higher MPPT capacity. Furthermore, perturb and observe method seems to be very useful because of its simplicity despite the unresolved algorithm for different methods, such as constant voltage tracking technique.
机译:本文重点介绍使用MATLAB / Simulink软件在光伏(PV)电池系统上最大功率点跟踪(MPPT)的行为。当使用双指数类型,即双二极管模型时,PV电池可以提供更好的仿真结果。原因是,即使效率稍低,它也可以在实际测试条件下更加准确。这证实了理论上的单二极管模型仍然需要更多的改进。此外,与传统的硅PV电池相比,多结太阳能电池也进行了研究以获得最大性能。获得的结果表明,与传统的PV电池相比,串联(或多结)电池可提供近3倍的最大功率。因此,由于更高的MPPT容量,多结/串联PV电池在整个晴天可以产生更高的功率。此外,扰动和观察方法似乎非常有用,因为它简单易行,尽管对于诸如恒定电压跟踪技术之类的不同方法尚未解决算法。

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