2016
Houria M.
Douleur et hémopathies bénignes. Journées Nationales de lutte contre la douleur . 2016.
Boutabba T, Drid S, Alaoui LC, Ouriagli M, Benbouzid MEH.
dSPACE Real-Time Implementation of Maximum Power Point Tracking Based on Ripple Correlation Control (RCC) Structure for Photovoltaic System. 5th International Conference on Systems and Control, Cadi Ayyad University5th International Conference on Systems and Control, Cadi Ayyad University. 2016.
Boutabba T, Drid S, Alaoui LC, Ouriagli M, Benbouzid MEH.
dSPACE Real-Time Implementation of Maximum Power Point Tracking Based on Ripple Correlation Control (RCC) Structure for Photovoltaic System. 5th International Conference on Systems and Control, Cadi Ayyad University5th International Conference on Systems and Control, Cadi Ayyad University. 2016.
Boutabba T, Drid S, Alaoui LC, Ouriagli M, Benbouzid MEH.
dSPACE Real-Time Implementation of Maximum Power Point Tracking Based on Ripple Correlation Control (RCC) Structure for Photovoltaic System. 5th International Conference on Systems and Control, Cadi Ayyad University5th International Conference on Systems and Control, Cadi Ayyad University. 2016.
Boutabba T, Drid S, Alaoui LC, Ouriagli M, Benbouzid MEH.
dSPACE Real-Time Implementation of Maximum Power Point Tracking Based on Ripple Correlation Control (RCC) Structure for Photovoltaic System. 5th International Conference on Systems and Control, Cadi Ayyad University5th International Conference on Systems and Control, Cadi Ayyad University. 2016.
Boutabba T, Drid S, Alaoui LC, Ouriagli M, Benbouzid MEH.
dSPACE Real-Time Implementation of Maximum Power Point Tracking Based on Ripple Correlation Control (RCC) Structure for Photovoltaic System. 5th International Conference on Systems and Control, Cadi Ayyad University5th International Conference on Systems and Control, Cadi Ayyad University. 2016.
Hamada S, Louai FZ, Nait-Said N, Benabou A.
Dynamic hysteresis modeling including skin effect using diffusion equation model. Journal of Magnetism and Magnetic MaterialsJournal of Magnetism and Magnetic Materials. 2016;410 :137-143.
AbstractAn improved dynamic hysteresis model is proposed for the prediction of hysteresis loop of electrical steel up to mean frequencies, taking into account the skin effect. In previous works, the analytical solution of the diffusion equation for low frequency (DELF) was coupled with the inverse static Jiles-Atherton (JA) model in order to represent the hysteresis behavior for a lamination. In the present paper, this approach is improved to ensure the reproducibility of measured hysteresis loops at mean frequency. The results of simulation are compared with the experimental ones. The selected results for frequencies 50 Hz, 100 Hz, 200 Hz and 400 Hz are presented and discussed.
Hamada S, Louai FZ, Nait-Said N, Benabou A.
Dynamic hysteresis modeling including skin effect using diffusion equation model. Journal of Magnetism and Magnetic MaterialsJournal of Magnetism and Magnetic Materials. 2016;410 :137-143.
AbstractAn improved dynamic hysteresis model is proposed for the prediction of hysteresis loop of electrical steel up to mean frequencies, taking into account the skin effect. In previous works, the analytical solution of the diffusion equation for low frequency (DELF) was coupled with the inverse static Jiles-Atherton (JA) model in order to represent the hysteresis behavior for a lamination. In the present paper, this approach is improved to ensure the reproducibility of measured hysteresis loops at mean frequency. The results of simulation are compared with the experimental ones. The selected results for frequencies 50 Hz, 100 Hz, 200 Hz and 400 Hz are presented and discussed.
Hamada S, Louai FZ, Nait-Said N, Benabou A.
Dynamic hysteresis modeling including skin effect using diffusion equation model. Journal of Magnetism and Magnetic MaterialsJournal of Magnetism and Magnetic Materials. 2016;410 :137-143.
AbstractAn improved dynamic hysteresis model is proposed for the prediction of hysteresis loop of electrical steel up to mean frequencies, taking into account the skin effect. In previous works, the analytical solution of the diffusion equation for low frequency (DELF) was coupled with the inverse static Jiles-Atherton (JA) model in order to represent the hysteresis behavior for a lamination. In the present paper, this approach is improved to ensure the reproducibility of measured hysteresis loops at mean frequency. The results of simulation are compared with the experimental ones. The selected results for frequencies 50 Hz, 100 Hz, 200 Hz and 400 Hz are presented and discussed.
Hamada S, Louai FZ, Nait-Said N, Benabou A.
Dynamic hysteresis modeling including skin effect using diffusion equation model. Journal of Magnetism and Magnetic MaterialsJournal of Magnetism and Magnetic Materials. 2016;410 :137-143.
AbstractAn improved dynamic hysteresis model is proposed for the prediction of hysteresis loop of electrical steel up to mean frequencies, taking into account the skin effect. In previous works, the analytical solution of the diffusion equation for low frequency (DELF) was coupled with the inverse static Jiles-Atherton (JA) model in order to represent the hysteresis behavior for a lamination. In the present paper, this approach is improved to ensure the reproducibility of measured hysteresis loops at mean frequency. The results of simulation are compared with the experimental ones. The selected results for frequencies 50 Hz, 100 Hz, 200 Hz and 400 Hz are presented and discussed.
KADDOURI W, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
On the effect of inclusion shape on effective thermal conductivity of heterogeneous materials. Mechanics of MaterialsMechanics of Materials. 2016;Volume 92 :Pages 28-41.
KADDOURI W, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
On the effect of inclusion shape on effective thermal conductivity of heterogeneous materials. Mechanics of MaterialsMechanics of Materials. 2016;Volume 92 :Pages 28-41.
KADDOURI W, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
On the effect of inclusion shape on effective thermal conductivity of heterogeneous materials. Mechanics of MaterialsMechanics of Materials. 2016;Volume 92 :Pages 28-41.
KADDOURI W, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
On the effect of inclusion shape on effective thermal conductivity of heterogeneous materials. Mechanics of MaterialsMechanics of Materials. 2016;Volume 92 :Pages 28-41.
KADDOURI W, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
On the effect of inclusion shape on effective thermal conductivity of heterogeneous materials. Mechanics of MaterialsMechanics of Materials. 2016;Volume 92 :Pages 28-41.
Abboudi A, Meddour B, Chermime B, Djebaili H, Brioua M.
Effect of MoZrN Coating on a Steel XC100. Металлофизика и новейшие технологииМеталлофизика и новейшие технологии. 2016.
Abboudi A, Meddour B, Chermime B, Djebaili H, Brioua M.
Effect of MoZrN Coating on a Steel XC100. Металлофизика и новейшие технологииМеталлофизика и новейшие технологии. 2016.
Abboudi A, Meddour B, Chermime B, Djebaili H, Brioua M.
Effect of MoZrN Coating on a Steel XC100. Металлофизика и новейшие технологииМеталлофизика и новейшие технологии. 2016.
Abboudi A, Meddour B, Chermime B, Djebaili H, Brioua M.
Effect of MoZrN Coating on a Steel XC100. Металлофизика и новейшие технологииМеталлофизика и новейшие технологии. 2016.
Abboudi A, Meddour B, Chermime B, Djebaili H, Brioua M.
Effect of MoZrN Coating on a Steel XC100. Металлофизика и новейшие технологииМеталлофизика и новейшие технологии. 2016.