Hysteresis Current Control & MPPT Approach Applied to a Grid — Connected Solar PV System

Faouzi Tlili, F. Bacha
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Abstract

This paper discusses two control strategies applied to a grid-connected solar PV system. Taking into account that the proposed conversion chain consists of a photovoltaic generator, an adaptation stage composed of a boost dc/dc converter associated in series with a three phase dc/ac converter and the grid. In particular, the maximum power point tracking (MPPT) approach based on P&O is devoted to the boost converter. However, the hysteresis current control is dedicated to the three phase dc/ac converter. Consequently, so as to achieve a feasibility of these two techniques, the author resorted to the Matlab/Simulink environment to carried out the necessary simulations. In other hand, the experimental results have been carried out with help a Dspace card accompanied with the conversion chain, PV module and the grid.
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并网太阳能光伏系统的磁滞电流控制及MPPT方法
本文讨论了太阳能光伏并网系统的两种控制策略。考虑到所提出的转换链由光伏发电机、升压dc/dc变换器与三相dc/ac变换器串联组成的适应阶段和电网组成。特别针对升压变换器,提出了基于P&O的最大功率点跟踪(MPPT)方法。然而,滞后电流控制是专用于三相dc/ac变换器的。因此,为了实现这两种技术的可行性,笔者借助Matlab/Simulink环境进行了必要的仿真。另一方面,借助带有转换链、光伏组件和电网的Dspace卡进行了实验结果。
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