Publications

2019
Souhila BOUSLIMANI. Commande asynchrone d'une machine asynchrone double étoile. 2019.
Riad MADACI. Commande de la machine asynchrone par Mode de glissement. 2019.
Souhyla B, Kaoutar B. Commande Directe du Couple de la Machine Asynchrone Double Etoile(MASDE). 2019.
Souhyla B, Kaoutar B. Commande Directe du Couple de la Machine Asynchrone Double Etoile(MASDE). 2019.
Amel ZITOUNI. Commande hybride floue-glissant de la machine à induction. 2019.
Imane DJOUALA. Commande par DTC de la GADA. 2019.
Abderahmane ZEMACHE. Commande par mode glissant de la machine synchrone à aimants permanents. 2019.
Farid ZAHAL. Commande vectorielle de la machine asynchrone par un régulateur PI. 2019.
Khaled KHERCHOUCHE. Commande vectorielle de la machine synchrone à aimants permanents. 2019.
Dahmane H, Nabil B, Bachir H, Khaldoun LI, Abdelhadi B. Composite Material Characterization using Eddy Current by 3D FEM Associated with Iterative Technique, ISSN 2119-0275. Advanced Electromagnetics Journal (AEMJ) [Internet]. 2019;volume 8 (N°1). Publisher's VersionAbstract
In this paper, an iterative technique, employing the T formulation associated with the finite element method, based on Maxwell’s equations and the Biot-savart law, is used for analyzing the density of eddy currents in composite carbon fiber reinforced polymer (CFRP) materials. For this purpose, a code has been developed for solving an electromagnetic 3D non-destructive evaluation problem. This latter permits the characterization of this CFRP and determinate of fibers orientation using the impedance variation which is implanted in polar diagram. Firstly, the obtained results are compared with those of the analytical model. This comparison reveals a high concordance which proves the validity of the proposed method. Secondly, three different applications are shown for illustrating the characterization of unidirectional, bidirectional and multidirectional piece using a rectangular coil plotted in normalized impedance diagram.
Dahmane H, Nabil B, Bachir H, Khaldoun LI, Abdelhadi B. Composite Material Characterization using Eddy Current by 3D FEM Associated with Iterative Technique, ISSN 2119-0275. Advanced Electromagnetics Journal (AEMJ) [Internet]. 2019;volume 8 (N°1). Publisher's VersionAbstract
In this paper, an iterative technique, employing the T formulation associated with the finite element method, based on Maxwell’s equations and the Biot-savart law, is used for analyzing the density of eddy currents in composite carbon fiber reinforced polymer (CFRP) materials. For this purpose, a code has been developed for solving an electromagnetic 3D non-destructive evaluation problem. This latter permits the characterization of this CFRP and determinate of fibers orientation using the impedance variation which is implanted in polar diagram. Firstly, the obtained results are compared with those of the analytical model. This comparison reveals a high concordance which proves the validity of the proposed method. Secondly, three different applications are shown for illustrating the characterization of unidirectional, bidirectional and multidirectional piece using a rectangular coil plotted in normalized impedance diagram.
Dahmane H, Nabil B, Bachir H, Khaldoun LI, Abdelhadi B. Composite Material Characterization using Eddy Current by 3D FEM Associated with Iterative Technique, ISSN 2119-0275. Advanced Electromagnetics Journal (AEMJ) [Internet]. 2019;volume 8 (N°1). Publisher's VersionAbstract
In this paper, an iterative technique, employing the T formulation associated with the finite element method, based on Maxwell’s equations and the Biot-savart law, is used for analyzing the density of eddy currents in composite carbon fiber reinforced polymer (CFRP) materials. For this purpose, a code has been developed for solving an electromagnetic 3D non-destructive evaluation problem. This latter permits the characterization of this CFRP and determinate of fibers orientation using the impedance variation which is implanted in polar diagram. Firstly, the obtained results are compared with those of the analytical model. This comparison reveals a high concordance which proves the validity of the proposed method. Secondly, three different applications are shown for illustrating the characterization of unidirectional, bidirectional and multidirectional piece using a rectangular coil plotted in normalized impedance diagram.
Dahmane H, Nabil B, Bachir H, Khaldoun LI, Abdelhadi B. Composite Material Characterization using Eddy Current by 3D FEM Associated with Iterative Technique, ISSN 2119-0275. Advanced Electromagnetics Journal (AEMJ) [Internet]. 2019;volume 8 (N°1). Publisher's VersionAbstract
In this paper, an iterative technique, employing the T formulation associated with the finite element method, based on Maxwell’s equations and the Biot-savart law, is used for analyzing the density of eddy currents in composite carbon fiber reinforced polymer (CFRP) materials. For this purpose, a code has been developed for solving an electromagnetic 3D non-destructive evaluation problem. This latter permits the characterization of this CFRP and determinate of fibers orientation using the impedance variation which is implanted in polar diagram. Firstly, the obtained results are compared with those of the analytical model. This comparison reveals a high concordance which proves the validity of the proposed method. Secondly, three different applications are shown for illustrating the characterization of unidirectional, bidirectional and multidirectional piece using a rectangular coil plotted in normalized impedance diagram.
Dahmane H, Nabil B, Bachir H, Khaldoun LI, Abdelhadi B. Composite Material Characterization using Eddy Current by 3D FEM Associated with Iterative Technique, ISSN 2119-0275. Advanced Electromagnetics Journal (AEMJ) [Internet]. 2019;volume 8 (N°1). Publisher's VersionAbstract
In this paper, an iterative technique, employing the T formulation associated with the finite element method, based on Maxwell’s equations and the Biot-savart law, is used for analyzing the density of eddy currents in composite carbon fiber reinforced polymer (CFRP) materials. For this purpose, a code has been developed for solving an electromagnetic 3D non-destructive evaluation problem. This latter permits the characterization of this CFRP and determinate of fibers orientation using the impedance variation which is implanted in polar diagram. Firstly, the obtained results are compared with those of the analytical model. This comparison reveals a high concordance which proves the validity of the proposed method. Secondly, three different applications are shown for illustrating the characterization of unidirectional, bidirectional and multidirectional piece using a rectangular coil plotted in normalized impedance diagram.
Abdelmalik KHERCHOUCHE, Abdelhalim MEDOUR. Conception, étude et réalisation d'un système de positionnement. 2019.
Abdelmalik KHERCHOUCHE, Abdelhalim MEDOUR. Conception, étude et réalisation d'un système de positionnement. 2019.
yazid ZIDANIM. Contribution à la commande d'un MADA . Apport des techniques de l'intelligence artificielle. 2019.
Louanasse L. Contribution au contrôle de la machine synchrone double étoile. 2019.
Hamza DRID. Contrôle adaptatif de la machine synchrone à aimants permanents. 2019.
Merwane KHEBAL, Abderrahmane DALI. Contrôle Non Destructif par Flux de Fuite Magnétique Appliqué aux Pièces Ferromagnétiques. 2019.

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