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An improved analytical solution for MPP parameters of photovoltaic cells

机译:光伏电池MPP参数的改进分析解决方案

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Aimed at the puzzle that the maximum power point (MPP) parameters of photovoltaic (PV) cells cannot be readily solved, this paper starts with a detailed theoretical analysis on the analytical solutions for MPP parameters under the ideal circuit model on the grounds of the mean value theorem, and then the exact analytical expressions for MPP parameters are deduced by referring to the general circuit model of PV cells. Of the analytical expressions deduced in this paper, the variables are directly correlated, and their solutions are handy and demanding no iterative algorithms. Next, the effects of cell temperature and solar irradiance on each component of the analytical expressions are dissected in detail, with the minor components ignored, so as to uncover a linear relationship among MPP parameters, cell temperature and solar irradiance. Eventually, approximate linear estimation formulas for MPP parameters are obtained. The validity of the two deduced formulas is then verified by various simulation experiments and field measurement experiments, both of which prove that the acquired parameters have a high accuracy for practical applications. Moreover, the formulas are open for selection or further simplification in accordance with different requirements on computation loads of algorithms or varying needs for parameter accuracy.
机译:针对无法轻易解决光伏(PV)电池的最大功率点(MPP)参数的难题,本文从理想电路模型的均方根出发,对MPP参数的解析解进行了详细的理论分析。值定理,然后参考光伏电池的一般电路模型推导MPP参数的精确解析表达式。在本文推导的解析表达式中,变量直接相关,并且它们的解决方案方便且不需要迭代算法。接下来,详细分析了电池温度和太阳辐照度对解析表达式的每个分量的影响,忽略了次要分量,从而揭示了MPP参数,电池温度和太阳辐照度之间的线性关系。最终,获得了MPP参数的近似线性估计公式。然后通过各种模拟实验和现场测量实验验证了两个推导公式的有效性,两者均证明所获得的参数具有较高的实际应用精度。此外,根据对算法的计算负荷的不同要求或对参数精度的不同需求,可以对公式进行选择或进一步简化。

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