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Model of series-parallel photovoltaic arrays designed for parallel computing

机译:用于平行计算的系列平行光伏阵列模型

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Photovoltaic (PV) arrays connected in Series-Parallel (SP) configuration are widely used in PV installations of different power levels. Accurate and low calculation time models of SP arrays are required for different applications; however, the models available in literature have a high computational burden due to the requirement of solving nested systems of nonlinear equations. This paper introduces a mathematical model for SP arrays designed for parallel computing to improve the calculation speed. For a given array voltage the current of each string is calculated by solving a nonlinear equation, which is independent from the other strings. Therefore, each nonlinear equation is solved in a different core and, finally, all the strings' currents are added to obtain the array current. Simulation results put into evidence the capacity of the proposed model to reproduce the characteristic curves of an SP array and the reduction in the calculation time with respect to an equivalent model available in literature.
机译:以串联(SP)配置连接的光伏(PV)阵列广泛用于不同功率水平的PV安装。不同的应用程序需要精确,低计算时间模型SP阵列;然而,由于要求求解非线性方程的嵌套系统,文献中可用的模型具有高计算负担。本文介绍了用于SP阵列的数学模型,用于平行计算以提高计算速度。对于给定的阵列电压,通过求解非线性方程来计算每个弦的电流,该非线性等式独立于其他字符串。因此,每个非线性方程在不同的核心中解决,最后,添加所有字符串电流以获得阵列电流。仿真结果投入了所提出的模型的能力来再现SP阵列的特征曲线以及关于文献中可用的等同模型的计算时间的减少。

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