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Mathematical model to estimate the maximum power output of a total cross tied connected PV array during partial shading condition

机译:用于估计部分遮光条件下整个交叉连接光伏阵列的最大功率输出的数学模型

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摘要

Estimation of the output power of a solar photovoltaic (PV) system during partial shading condition (PSC) is an interest of PV installers. Owing to the inclusion of a bypass diode, the occurrence of local and global maximum peak creates more difficulty in the calculation of maximum power output from a PV array. In this study, a mathematical model is established to estimate the percentage of degradation of a square total cross tied (TCT) connected PV array at different PSCs. By employing the proposed algorithm, it will be easier to estimate the maximum power point of a $m imes n$mxn ($m = n$m=n) TCT connected PV array during PSC without using any measuring instrument except for the measurement of irradiance and temperature. A better correlation is obtained when the output of the proposed model is compared with MATLAB simulated output. The output of the proposed model is compared with the experimental output performed on an array comprises of 3 W PV modules and the comparison shows the satisfactory result.
机译:光伏安装者的兴趣在于估算部分遮光条件(PSC)期间的太阳能光伏(PV)系统的输出功率。由于包括了旁路二极管,局部和全局最大峰值的出现在计算光伏阵列输出的最大功率时增加了难度。在这项研究中,建立了一个数学模型来估计在不同的PSC处方形总交叉连接(TCT)连接的光伏阵列的退化百分比。通过采用所提出的算法,不需使用任何测量仪器即可更容易地估计在PSC期间$ m times n $ mxn($ m = n $ m = n)TCT连接的光伏阵列的最大功率点和辐照度将提出的模型的输出与MATLAB仿真的输出进行比较,可以获得更好的相关性。将所提出的模型的输出与在包含3 W PV模块的阵列上执行的实验输出进行比较,比较显示出令人满意的结果。

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