Robust maximum power point tracking control for photovoltaic system based on second order sliding-mode

A. Fezzani, N. Bouarroudj, S. Drid, L. Zaghba
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Abstract

This paper proposes a control approach of a maximum power point of a photovoltaic (PV) system using the second order sliding mode approach. The main objective of the proposed paper is to track the maximum power point (MPP) using super twisting algorithm (STA) with a one-loop control method and augment efficiency of the output power system. The structure of a proposed approach is simple and robust aging the atmospheric changes. Such control approach solution has several advantages such as simple implementation, robustness; reduce the chattering phenomenon and good dynamic response compared to traditional first-order sliding mode control algorithm. The controller circuit adapts the duty cycle of the switch electronic device of the DC/DC converter to search maximum power point tracking as a function of evolution of the power input. The effectiveness and feasibility of the proposed control are verified by simulation in MATLAB/Simulink environment and dSPACE-based hardware in loop platform.
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基于二阶滑模的光伏系统鲁棒最大功率点跟踪控制
提出了一种利用二阶滑模方法控制光伏系统最大功率点的方法。本文的主要目标是利用超扭转算法(STA)跟踪单环控制的最大功率点(MPP),提高输出功率系统的效率。该方法结构简单,对大气变化具有较强的鲁棒性。该控制方法具有实现简单、鲁棒性好等优点;与传统的一阶滑模控制算法相比,减少了抖振现象,具有良好的动态响应。控制器电路根据DC/DC变换器的开关电子器件的占空比,根据输入功率的变化来搜索最大功率点跟踪。在MATLAB/Simulink环境和基于dspace的硬件在环平台上进行了仿真,验证了所提控制方法的有效性和可行性。
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