A Nonlinear Backstepping Controller of DC-DC Boost Converter for Maximizing Photovoltaic Power Extraction

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Date

2018-12-10

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Publisher

University of Eloued جامعة الوادي

Abstract

The objective of this work is to integrate the backstepping control for tracking the maximum power point of a photovoltaic (PV) system. This control strategy is applied for a parallel DC-DC converter (type: boost) in order to regulate the output voltage of the PV generator, according to the reference voltage generated by the known Perturbation and Observation (P&O) MPPT (maximum power point tracking) algorithm. The nonlinear backstepping controller is based on Lyapunov function for ensuring the local stability of the system. The basic idea of the nonlinear backstepping controller is to synthesize a command law in a recursive way, that is to say step by step. This controller has a good transition response, a low tracking error, and a very fast response to the changes in solar irradiation and environmental temperature. To prove the effectiveness of the suggested control method, a comparative study through numerical simulations is presented with the classical PI (proportional-integral) controller

Description

International Symposium on Mechatronics and Renewable Energies El-Oued 10- 11 December 2018

Keywords

Boost converter, backstepping control, maximum power point tracking (MPPT), photovoltaic chain

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