Publications

2020
Ouzani R, Si-Ameur M, Khelladi S, Danlos A. Mixing in turbulent compressible heated coaxial jets: A numerical study. International Journal of Hydrogen EnergyInternational Journal of Hydrogen Energy. 2020;45 :16816-16837.
Barka K, Guezouli L, Gourdache S, Ameghchouche S. Mobility Based Genetic Algorithm for Heterogeneous Wireless Networks. International Conference on Machine Learning for Networking. 2020 :93-106.
Barka K, Guezouli L, Gourdache S, Ameghchouche S. Mobility Based Genetic Algorithm for Heterogeneous Wireless Networks. International Conference on Machine Learning for Networking. 2020 :93-106.
Barka K, Guezouli L, Gourdache S, Ameghchouche S. Mobility Based Genetic Algorithm for Heterogeneous Wireless Networks. International Conference on Machine Learning for Networking. 2020 :93-106.
Barka K, Guezouli L, Gourdache S, Ameghchouche S. Mobility Based Genetic Algorithm for Heterogeneous Wireless Networks. International Conference on Machine Learning for Networking. 2020 :93-106.
Saadi D, Abbeche K, Boufarh R. Model experiments to assess effect of cavities on bearing capacity of two interfering superficial foundations resting on granular soil. Studia Geotechnica et MechanicaStudia Geotechnica et Mechanica. 2020;42 :222-231.
Saadi D, Abbeche K, Boufarh R. Model experiments to assess effect of cavities on bearing capacity of two interfering superficial foundations resting on granular soil. Studia Geotechnica et MechanicaStudia Geotechnica et Mechanica. 2020;42 :222-231.
Saadi D, Abbeche K, Boufarh R. Model experiments to assess effect of cavities on bearing capacity of two interfering superficial foundations resting on granular soil. Studia Geotechnica et MechanicaStudia Geotechnica et Mechanica. 2020;42 :222-231.
Hamada S, Louai F-Z, NAIT-SAID N. Modeling and Analysing the Influence of both Frequency and Mechanical Stress on Ferromagnetic Sheets NO Fe 3% Si using Improved Low Frequency Diffusion Equation Model. 2020 4th International Conference on Advanced Systems and Emergent Technologies (IC_ASET). 2020 :100-105.
Hamada S, Louai F-Z, NAIT-SAID N. Modeling and Analysing the Influence of both Frequency and Mechanical Stress on Ferromagnetic Sheets NO Fe 3% Si using Improved Low Frequency Diffusion Equation Model. 2020 4th International Conference on Advanced Systems and Emergent Technologies (IC_ASET). 2020 :100-105.
Hamada S, Louai F-Z, NAIT-SAID N. Modeling and Analysing the Influence of both Frequency and Mechanical Stress on Ferromagnetic Sheets NO Fe 3% Si using Improved Low Frequency Diffusion Equation Model. 2020 4th International Conference on Advanced Systems and Emergent Technologies (IC_ASET). 2020 :100-105.
Abdelkader S, Boubekeur A, Chaouki G. Modeling and Simulation of a Photovoltaic Generator Based Non-Linear Backstepping Control for Maximum Power Point Tracking. International Pluridisciplinary PhD Meeting (IPPM’20) Edition, February23-26, [Internet]. 2020. Publisher's VersionAbstract

In this paper, we propose a no-linear backstepping method of control to look for a maximum power point of the MPPT techniques used in the implementation of photovoltaic power systems. It will discuss between Perturb & Observe and Backstpping techniques used in tracking maximum power in photovoltaic arrays. Lyapunov’s method is used to archive the stabilization objectives. The proposed model is realized using power system block set under Matlab/SIMULINK.

Abdelkader S, Boubekeur A, Chaouki G. Modeling and Simulation of a Photovoltaic Generator Based Non-Linear Backstepping Control for Maximum Power Point Tracking. International Pluridisciplinary PhD Meeting (IPPM’20) Edition, February23-26, [Internet]. 2020. Publisher's VersionAbstract

In this paper, we propose a no-linear backstepping method of control to look for a maximum power point of the MPPT techniques used in the implementation of photovoltaic power systems. It will discuss between Perturb & Observe and Backstpping techniques used in tracking maximum power in photovoltaic arrays. Lyapunov’s method is used to archive the stabilization objectives. The proposed model is realized using power system block set under Matlab/SIMULINK.

Abdelkader S, Boubekeur A, Chaouki G. Modeling and Simulation of a Photovoltaic Generator Based Non-Linear Backstepping Control for Maximum Power Point Tracking. International Pluridisciplinary PhD Meeting (IPPM’20) Edition, February23-26, [Internet]. 2020. Publisher's VersionAbstract

In this paper, we propose a no-linear backstepping method of control to look for a maximum power point of the MPPT techniques used in the implementation of photovoltaic power systems. It will discuss between Perturb & Observe and Backstpping techniques used in tracking maximum power in photovoltaic arrays. Lyapunov’s method is used to archive the stabilization objectives. The proposed model is realized using power system block set under Matlab/SIMULINK.

Menacer F, Kadr A, Dibi Z. Modeling of a smart nano force sensor using finite elements and neural networks. International Journal of Automation and ComputingInternational Journal of Automation and Computing. 2020;17 :279-291.
Menacer F, Kadr A, Dibi Z. Modeling of a smart nano force sensor using finite elements and neural networks. International Journal of Automation and ComputingInternational Journal of Automation and Computing. 2020;17 :279-291.
Menacer F, Kadr A, Dibi Z. Modeling of a smart nano force sensor using finite elements and neural networks. International Journal of Automation and ComputingInternational Journal of Automation and Computing. 2020;17 :279-291.
Bourih K, Kaddouri W, Kanit T, Djebara Y, Imad A. Modelling of void shape effect on effective thermal conductivity of lotus-type porous materials. Mechanics of MaterialsMechanics of Materials. 2020;151 :103626.
Bourih K, Kaddouri W, Kanit T, Djebara Y, Imad A. Modelling of void shape effect on effective thermal conductivity of lotus-type porous materials. Mechanics of MaterialsMechanics of Materials. 2020;151 :103626.
Bourih K, Kaddouri W, Kanit T, Djebara Y, Imad A. Modelling of void shape effect on effective thermal conductivity of lotus-type porous materials. Mechanics of MaterialsMechanics of Materials. 2020;151 :103626.

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