2017
Zermane H, Mouss H-L, Oulmi T, Hemal S.
New fuzzy-Based Process Control System for a bag filter of a cement factory. 6th International Conference on Systems and Control (ICSC) [Internet]. 2017.
Publisher's VersionAbstract
During the last years, in industrial process control, requirements for Continuous Emission Monitoring (CEM) have increased significantly. Most plants are investing in CEM systems in order to burn waste, obtain ISO 14000 and 18001 certification to protect operator's life. In this work, our approach describes development of a novel internet and fuzzy-based CEM system (IFCEMS). This system contains operator's stations for the bag filter's automation system and monitored using Internet. The object of the present installation consists of a suction ventilator, a bag filter and a system for collecting and evacuating the dust. To optimize the running of the bag filter workshop and ensure continuous control, the process based on one of the most powerful Artificial Intelligence techniques which is fuzzy logic involves the removal or filtration of smoke from the kiln and/or cement mill with control of temperature and pressure of the fumes.
Zermane H, Mouss H-L, Oulmi T, Hemal S.
New fuzzy-Based Process Control System for a bag filter of a cement factory. 6th International Conference on Systems and Control (ICSC) [Internet]. 2017.
Publisher's VersionAbstract
During the last years, in industrial process control, requirements for Continuous Emission Monitoring (CEM) have increased significantly. Most plants are investing in CEM systems in order to burn waste, obtain ISO 14000 and 18001 certification to protect operator's life. In this work, our approach describes development of a novel internet and fuzzy-based CEM system (IFCEMS). This system contains operator's stations for the bag filter's automation system and monitored using Internet. The object of the present installation consists of a suction ventilator, a bag filter and a system for collecting and evacuating the dust. To optimize the running of the bag filter workshop and ensure continuous control, the process based on one of the most powerful Artificial Intelligence techniques which is fuzzy logic involves the removal or filtration of smoke from the kiln and/or cement mill with control of temperature and pressure of the fumes.
Zermane H, Mouss H-L, Oulmi T, Hemal S.
New fuzzy-Based Process Control System for a bag filter of a cement factory. 6th International Conference on Systems and Control (ICSC) [Internet]. 2017.
Publisher's VersionAbstract
During the last years, in industrial process control, requirements for Continuous Emission Monitoring (CEM) have increased significantly. Most plants are investing in CEM systems in order to burn waste, obtain ISO 14000 and 18001 certification to protect operator's life. In this work, our approach describes development of a novel internet and fuzzy-based CEM system (IFCEMS). This system contains operator's stations for the bag filter's automation system and monitored using Internet. The object of the present installation consists of a suction ventilator, a bag filter and a system for collecting and evacuating the dust. To optimize the running of the bag filter workshop and ensure continuous control, the process based on one of the most powerful Artificial Intelligence techniques which is fuzzy logic involves the removal or filtration of smoke from the kiln and/or cement mill with control of temperature and pressure of the fumes.
Ghoggali S, Toufik O, Latrèche S.
3D Finite Elements Modeling of the Interfacial Stresses Bone/Dental Implant-Effects of the Geometric Parameters. Journal of Biomimetics, Biomaterials and Biomedical EngineeringJournal of Biomimetics, Biomaterials and Biomedical Engineering. 2017;33 :32-44.
Ghoggali S, Toufik O, Latrèche S.
3D Finite Elements Modeling of the Interfacial Stresses Bone/Dental Implant-Effects of the Geometric Parameters. Journal of Biomimetics, Biomaterials and Biomedical EngineeringJournal of Biomimetics, Biomaterials and Biomedical Engineering. 2017;33 :32-44.
GHOGGALI S, OUTTAS T, LATRECHE S.
3D Finite Elements Modeling of the Interfacial Stresses Bone/Dental Implant - Effects of the Geometric ParameterS. Journal of Biomimetics, Biomaterials and Biomedical EngineeringJournal of Biomimetics, Biomaterials and Biomedical Engineering. 2017;Vol. 33.
AbstractA successful osseointegration involves the simultaneous optimization of the primary stability of the implant and the minimization of interfacial stresses bone - implant. In this context, the modeling of these stresses reports a great interest for researchers in last decades.The aim of this work is to study the effects of geometric parameters of a new model of titanium dental implant on the evolution of interfacial stresses bone /implant. For this, a dental implant of the second premolar in the lower jaw was considered, with different diameters, thread pitches and different thread forms. The profile of the interfacial stresses was presented for each case study, the results show a great similarity in the areas concerned, cortical bone, threaded region and cancellous bone, with the results obtained in the literature for other types of geometries.
Ghoggali S, Toufik O, Latrèche S.
3D Finite Elements Modeling of the Interfacial Stresses Bone/Dental Implant-Effects of the Geometric Parameters. Journal of Biomimetics, Biomaterials and Biomedical EngineeringJournal of Biomimetics, Biomaterials and Biomedical Engineering. 2017;33 :32-44.
GHOGGALI S, OUTTAS T, LATRECHE S.
3D Finite Elements Modeling of the Interfacial Stresses Bone/Dental Implant - Effects of the Geometric ParameterS. Journal of Biomimetics, Biomaterials and Biomedical EngineeringJournal of Biomimetics, Biomaterials and Biomedical Engineering. 2017;Vol. 33.
AbstractA successful osseointegration involves the simultaneous optimization of the primary stability of the implant and the minimization of interfacial stresses bone - implant. In this context, the modeling of these stresses reports a great interest for researchers in last decades.The aim of this work is to study the effects of geometric parameters of a new model of titanium dental implant on the evolution of interfacial stresses bone /implant. For this, a dental implant of the second premolar in the lower jaw was considered, with different diameters, thread pitches and different thread forms. The profile of the interfacial stresses was presented for each case study, the results show a great similarity in the areas concerned, cortical bone, threaded region and cancellous bone, with the results obtained in the literature for other types of geometries.
GHOGGALI S, OUTTAS T, LATRECHE S.
3D Finite Elements Modeling of the Interfacial Stresses Bone/Dental Implant - Effects of the Geometric ParameterS. Journal of Biomimetics, Biomaterials and Biomedical EngineeringJournal of Biomimetics, Biomaterials and Biomedical Engineering. 2017;Vol. 33.
AbstractA successful osseointegration involves the simultaneous optimization of the primary stability of the implant and the minimization of interfacial stresses bone - implant. In this context, the modeling of these stresses reports a great interest for researchers in last decades.The aim of this work is to study the effects of geometric parameters of a new model of titanium dental implant on the evolution of interfacial stresses bone /implant. For this, a dental implant of the second premolar in the lower jaw was considered, with different diameters, thread pitches and different thread forms. The profile of the interfacial stresses was presented for each case study, the results show a great similarity in the areas concerned, cortical bone, threaded region and cancellous bone, with the results obtained in the literature for other types of geometries.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and Reactive Power Control of a DFIG For Variable Speed Wind Energy Conversion. 6th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-96th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-9. 2017.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and reactive power control of a DFIG for variable speed wind energy conversion. 6th International Conference on Systems and Control (ICSC) [Internet]. 2017.
Publisher's VersionAbstract
In this paper, we propose a vector control of a doubly fed induction generator (DFIG) for variable speed wind power generation. The model is developed based on the dual powered generator for the control of the active and reactive powers. Several studies are carried out to test their operation under different wind conditions. The results have shown good performances of the wind energy converter system operate under wind variations with indirect vector control strategies.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and Reactive Power Control of a DFIG For Variable Speed Wind Energy Conversion. 6th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-96th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-9. 2017.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and reactive power control of a DFIG for variable speed wind energy conversion. 6th International Conference on Systems and Control (ICSC) [Internet]. 2017.
Publisher's VersionAbstract
In this paper, we propose a vector control of a doubly fed induction generator (DFIG) for variable speed wind power generation. The model is developed based on the dual powered generator for the control of the active and reactive powers. Several studies are carried out to test their operation under different wind conditions. The results have shown good performances of the wind energy converter system operate under wind variations with indirect vector control strategies.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and Reactive Power Control of a DFIG For Variable Speed Wind Energy Conversion. 6th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-96th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-9. 2017.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and reactive power control of a DFIG for variable speed wind energy conversion. 6th International Conference on Systems and Control (ICSC) [Internet]. 2017.
Publisher's VersionAbstract
In this paper, we propose a vector control of a doubly fed induction generator (DFIG) for variable speed wind power generation. The model is developed based on the dual powered generator for the control of the active and reactive powers. Several studies are carried out to test their operation under different wind conditions. The results have shown good performances of the wind energy converter system operate under wind variations with indirect vector control strategies.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and Reactive Power Control of a DFIG For Variable Speed Wind Energy Conversion. 6th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-96th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-9. 2017.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and reactive power control of a DFIG for variable speed wind energy conversion. 6th International Conference on Systems and Control (ICSC) [Internet]. 2017.
Publisher's VersionAbstract
In this paper, we propose a vector control of a doubly fed induction generator (DFIG) for variable speed wind power generation. The model is developed based on the dual powered generator for the control of the active and reactive powers. Several studies are carried out to test their operation under different wind conditions. The results have shown good performances of the wind energy converter system operate under wind variations with indirect vector control strategies.
Mazouz F, Belkacem S, Harbouche Y, Abdessemed R, Ouchen S.
Active and Reactive Power Control of a DFIG For Variable Speed Wind Energy Conversion. 6th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-96th International conference on system and control, IEEE, (ICSC), Batna-Algeria, May, 7-9. 2017.