Arezki Fekik

Arezki Fekik received his BSc, MSc, PhD degrees in Electrical Engineering from Mouloud Mammeri University, Tizi-Ouzou, Algeria, in 2011, 2013 and 2018, respectively. He is currently working at the University of Akli Mohand Oulhadj-Bouira. He is working in the area of power systems, power converters, power electronics, control systems and renewable energy . He became a Lecturer in 2019 and member in the international group of system control (IGCS) since 2018, member of the Springer conference committee (AISI2018, AMLTA2018, AISI2019, AMLTA2019, AISI2020, AMLTA2020, AICV_2020, AMLTA2021) and member in the IEEE SMARTTECH 2020 conference. His current research interests include power electronics and its applications such as wind turbines, photovoltaic systems, Power Quality, harmonics, microgrids and variable speed drives. He has published 30 journal and conference articles and book chapters in the fields of power electronics and its applications and renewable energy.

Publications

Modeling and Control of Static Converters for Hybrid Storage Systems
Arezki Fekik, Nacereddine Benamrouche. © 2022. 355 pages.
The energy transition initiated in recent years has enabled the growing integration of renewable production into the energy mix. Microgrids make it possible to maximize the...
Power Quality Improvement for Grid-Connected Photovoltaic Panels Using Direct Power Control
Arezki Fekik, Mohamed Lamine Hamida, Hamza Houassine, Ahmad Taher Azar, Nashwa Ahmad Kamal, Hakim Denoun, Sundarapandian Vaidyanathan, Aceng Sambas. © 2022. 36 pages.
This chapter displays a control strategy for a photovoltaic system (PV) linked to the network with two phases of a PWM converter, where the first phase is a DC-DC converter...
Flying Capacitor Inverter Integration in a Renewable Energy System
Mohamed Lamine Hamida, Arezki Fekik, Hakim Denoun, Aghiles Ardjal, Aicha Aissa Bokhtache. © 2022. 20 pages.
This chapter presents a three-cell flying capacitor converter photovoltaic (PV) system. This system consists of a DC-DC boost power converter connected in series with a multicell...
Artificial Neural Network for PWM Rectifier Direct Power Control and DC Voltage Control
Arezki Fekik, Hakim Denoun, Ahmad Taher Azar, Mustapha Zaouia, Nabil Benyahia, Mohamed Lamine Hamida, Nacereddine Benamrouche, Sundarapandian Vaidyanathan. © 2022. 31 pages.
In this chapter, a new technique has been proposed for reducing the harmonic content of a three-phase PWM rectifier connected to the networks with a unit power factor and also...
Artificial Neural Network for PWM Rectifier Direct Power Control and DC Voltage Control
Arezki Fekik, Hakim Denoun, Ahmad Taher Azar, Mustapha Zaouia, Nabil Benyahia, Mohamed Lamine Hamida, Nacereddine Benamrouche, Sundarapandian Vaidyanathan. © 2018. 31 pages.
In this chapter, a new technique has been proposed for reducing the harmonic content of a three-phase PWM rectifier connected to the networks with a unit power factor and also...