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Submodule-Based Modeling and Simulation of a Series-Parallel Photovoltaic Array Under Mismatch Conditions

机译:不匹配条件下串联-并联光伏阵列的基于子模块的建模和仿真

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摘要

This paper presents a simple and theoretically sound submodule-based model to simulate the characteristics of a photovoltaic (PV) array with a series-parallel configuration. The proposed model can describe the behavior of bypass diodes as well as the full PV array characteristics under varying irradiance and temperature conditions. Rather than using the nonlinear system of equations solved with a Jacobian matrix, separate equations are employed to model the submodule-based PV array and solved by an easy-to-implement bisection search method. Consequently, the output current of the PV array can be readily determined when its output voltage, the irradiance levels, and temperature values of all submodules are given. The robustness and calculation efficiency of the proposed computational method are analyzed. Some test examples allow us to exhibit the acceptable accuracy of the proposed model. Special attention of this work is paid to the simulation approach to evaluate the electrical mismatch losses in large-scale PV arrays with nonuniform aging after several years of field operation and exposure.
机译:本文提出了一个简单且理论上合理的基于子模块的模型,以模拟具有串并联配置的光伏(PV)阵列的特性。所提出的模型可以描述在变化的辐照度和温度条件下旁路二极管的行为以及完整的光伏阵列特性。与其使用由雅可比矩阵求解的非线性方程组,不如使用单独的方程式对基于子模块的光伏阵列建模,并通过易于实现的对分搜索方法求解。因此,当给出所有子模块的输出电压,辐照度和温度值时,可以轻松确定PV阵列的输出电流。分析了所提出的计算方法的鲁棒性和计算效率。一些测试示例使我们能够展现所提出模型的可接受的准确性。这项工作要特别注意模拟方法,以评估经过几年的现场操作和暴露后具有不均匀老化的大型PV阵列中的电气失配损耗。

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