Design of an effective control for grid-connected PV system based on FS-MPC

Author:

Attik Nadjah1,Badoud Essalam1,Merahi Farid1,Laib Abdelbaset2,Ayat Yahya1

Affiliation:

1. Automatic laboratory of Setif, Electrical engineering department, university of Ferhat Abess, Setif, Algeria

2. LEPCI laboratory, Electronics department. university of Ferhat Abess, Setif, Algeria

Abstract

This paper is deals in part of research that has been conducted on modern means in the basis of power electronics. Harmonic cancellation of distribution network is currently a serious problem, especially in high electrical industry. The main source of harmonic currents injected into the network requires attention to reduce the current harmonic levels. Energy quality is a fairly broad concept which covers both, the quality of power supply (voltage wave) and these of the currents injected into the electrical grid. In this context, a modern approved preventive solution in purpose to limit the rate of harmonic disturbance caused by the deferent power electronics systems connected to the grid must take action. It appears necessary to develop the quality and stability of the grid and develop curative devices such as converters provided with a control device making the current drawn on the most sinusoidal network possible. This paper proposes a control of tow stage grid tied PV system established on finite set model predictive control (FS-MPC). The design of FS-MPC is developed depending on the structure and operating principle associated to three-phase inverter tied to the grid. In this context, we have also employed the structure of MPPT controller (P&O) and PI controller for adjustment of the DC-bus voltage. To set the proposed control scheme, numerical simulations are carried out using Matlab/Simulink 2013b. The obtained results demonstrate that the proposed control scheme assure the tracking of MPP and the injection of extracted PV power into the grid with high current quality under irradiation changes.

Publisher

National Library of Serbia

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Reactive Power Compensation of 10kV A-Line by MCR Reactive Power Compensation Device under MFAC Control Strategy;2023 8th International Conference on Power and Renewable Energy (ICPRE);2023-09-22

2. An improved DC-link control for dual-stage grid connected Photovoltaic system using three-level Neutral Point Climped inverter;2022 19th International Multi-Conference on Systems, Signals & Devices (SSD);2022-05-06

3. Mitigation of power quality issues in distribution systems using harmonic filters and capacitor banks;Facta universitatis - series: Electronics and Energetics;2021

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