Publications

2021
Mazouz F, Belkacem S. Super Twisting Algorithm Direct Power Control of DFIG Using Space Vector Modulation. 2021.
BENDJEDDOU YACINE, Deboucha A, Bentouhami L, MERABET ELKHEIR, Abdessemed R. Super twisting sliding mode approach applied to voltage orientated control of a stand-alone induction generator. Protection and Control of Modern Power SystemsProtection and Control of Modern Power Systems. 2021;6 :18.Abstract
To enhance the robustness and dynamic performance of a self-excited induction generator (SEIG) used in a stand-alone wind energy system (WES), a virtual flux oriented control (VFOC) based on nonlinear super-twisting sliding mode control (STSMC) is adopted. STSMC is used to replace the conventional proportional-integral-Fuzzy Logic Controller (PI-FLC) of the inner current control loops. The combination of the proposed control strategy with space vector modulation (SVM) applied to a PWM rectifier brings many advantages such as reduction in harmonics, and precise and rapid tracking of the references. The performance of the proposed control technique (STSMC-VFOC-SVM) is verified through simulations and compared with the traditional technique (PI-FLC-VFOC-SVM). It shows that the proposed method improves the dynamics of the system with reduced current harmonics. In addition, the use of a virtual flux estimator instead of a phase-locked loop (PLL) eliminates the line voltage sensors and thus increases the reliability of the system.
BENDJEDDOU YACINE, Deboucha A, Bentouhami L, MERABET ELKHEIR, Abdessemed R. Super twisting sliding mode approach applied to voltage orientated control of a stand-alone induction generator. Protection and Control of Modern Power SystemsProtection and Control of Modern Power Systems. 2021;6 :18.Abstract
To enhance the robustness and dynamic performance of a self-excited induction generator (SEIG) used in a stand-alone wind energy system (WES), a virtual flux oriented control (VFOC) based on nonlinear super-twisting sliding mode control (STSMC) is adopted. STSMC is used to replace the conventional proportional-integral-Fuzzy Logic Controller (PI-FLC) of the inner current control loops. The combination of the proposed control strategy with space vector modulation (SVM) applied to a PWM rectifier brings many advantages such as reduction in harmonics, and precise and rapid tracking of the references. The performance of the proposed control technique (STSMC-VFOC-SVM) is verified through simulations and compared with the traditional technique (PI-FLC-VFOC-SVM). It shows that the proposed method improves the dynamics of the system with reduced current harmonics. In addition, the use of a virtual flux estimator instead of a phase-locked loop (PLL) eliminates the line voltage sensors and thus increases the reliability of the system.
BENDJEDDOU YACINE, Deboucha A, Bentouhami L, MERABET ELKHEIR, Abdessemed R. Super twisting sliding mode approach applied to voltage orientated control of a stand-alone induction generator. Protection and Control of Modern Power SystemsProtection and Control of Modern Power Systems. 2021;6 :18.Abstract
To enhance the robustness and dynamic performance of a self-excited induction generator (SEIG) used in a stand-alone wind energy system (WES), a virtual flux oriented control (VFOC) based on nonlinear super-twisting sliding mode control (STSMC) is adopted. STSMC is used to replace the conventional proportional-integral-Fuzzy Logic Controller (PI-FLC) of the inner current control loops. The combination of the proposed control strategy with space vector modulation (SVM) applied to a PWM rectifier brings many advantages such as reduction in harmonics, and precise and rapid tracking of the references. The performance of the proposed control technique (STSMC-VFOC-SVM) is verified through simulations and compared with the traditional technique (PI-FLC-VFOC-SVM). It shows that the proposed method improves the dynamics of the system with reduced current harmonics. In addition, the use of a virtual flux estimator instead of a phase-locked loop (PLL) eliminates the line voltage sensors and thus increases the reliability of the system.
BENDJEDDOU YACINE, Deboucha A, Bentouhami L, MERABET ELKHEIR, Abdessemed R. Super twisting sliding mode approach applied to voltage orientated control of a stand-alone induction generator. Protection and Control of Modern Power SystemsProtection and Control of Modern Power Systems. 2021;6 :18.Abstract
To enhance the robustness and dynamic performance of a self-excited induction generator (SEIG) used in a stand-alone wind energy system (WES), a virtual flux oriented control (VFOC) based on nonlinear super-twisting sliding mode control (STSMC) is adopted. STSMC is used to replace the conventional proportional-integral-Fuzzy Logic Controller (PI-FLC) of the inner current control loops. The combination of the proposed control strategy with space vector modulation (SVM) applied to a PWM rectifier brings many advantages such as reduction in harmonics, and precise and rapid tracking of the references. The performance of the proposed control technique (STSMC-VFOC-SVM) is verified through simulations and compared with the traditional technique (PI-FLC-VFOC-SVM). It shows that the proposed method improves the dynamics of the system with reduced current harmonics. In addition, the use of a virtual flux estimator instead of a phase-locked loop (PLL) eliminates the line voltage sensors and thus increases the reliability of the system.
BENDJEDDOU YACINE, Deboucha A, Bentouhami L, MERABET ELKHEIR, Abdessemed R. Super twisting sliding mode approach applied to voltage orientated control of a stand-alone induction generator. Protection and Control of Modern Power SystemsProtection and Control of Modern Power Systems. 2021;6 :18.Abstract
To enhance the robustness and dynamic performance of a self-excited induction generator (SEIG) used in a stand-alone wind energy system (WES), a virtual flux oriented control (VFOC) based on nonlinear super-twisting sliding mode control (STSMC) is adopted. STSMC is used to replace the conventional proportional-integral-Fuzzy Logic Controller (PI-FLC) of the inner current control loops. The combination of the proposed control strategy with space vector modulation (SVM) applied to a PWM rectifier brings many advantages such as reduction in harmonics, and precise and rapid tracking of the references. The performance of the proposed control technique (STSMC-VFOC-SVM) is verified through simulations and compared with the traditional technique (PI-FLC-VFOC-SVM). It shows that the proposed method improves the dynamics of the system with reduced current harmonics. In addition, the use of a virtual flux estimator instead of a phase-locked loop (PLL) eliminates the line voltage sensors and thus increases the reliability of the system.
Benmohammed A, Hadji D, Guendouzi A, Mouchaal Y, Djafri A, Khelil A. Synthesis, Characterization, Linear and NLO Properties of Novel N-(2, 4-Dinitrobenzylidene)-3-Chlorobenzenamine Schiff Base: Combined Experimental and DFT Calculations. Journal of Electronic MaterialsJournal of Electronic Materials. 2021;50 :5282-5293.
Benmohammed A, Hadji D, Guendouzi A, Mouchaal Y, Djafri A, Khelil A. Synthesis, Characterization, Linear and NLO Properties of Novel N-(2, 4-Dinitrobenzylidene)-3-Chlorobenzenamine Schiff Base: Combined Experimental and DFT Calculations. Journal of Electronic MaterialsJournal of Electronic Materials. 2021;50 :5282-5293.
Benmohammed A, Hadji D, Guendouzi A, Mouchaal Y, Djafri A, Khelil A. Synthesis, Characterization, Linear and NLO Properties of Novel N-(2, 4-Dinitrobenzylidene)-3-Chlorobenzenamine Schiff Base: Combined Experimental and DFT Calculations. Journal of Electronic MaterialsJournal of Electronic Materials. 2021;50 :5282-5293.
Benmohammed A, Hadji D, Guendouzi A, Mouchaal Y, Djafri A, Khelil A. Synthesis, Characterization, Linear and NLO Properties of Novel N-(2, 4-Dinitrobenzylidene)-3-Chlorobenzenamine Schiff Base: Combined Experimental and DFT Calculations. Journal of Electronic MaterialsJournal of Electronic Materials. 2021;50 :5282-5293.
Benmohammed A, Hadji D, Guendouzi A, Mouchaal Y, Djafri A, Khelil A. Synthesis, Characterization, Linear and NLO Properties of Novel N-(2, 4-Dinitrobenzylidene)-3-Chlorobenzenamine Schiff Base: Combined Experimental and DFT Calculations. Journal of Electronic MaterialsJournal of Electronic Materials. 2021;50 :5282-5293.
Benmohammed A, Hadji D, Guendouzi A, Mouchaal Y, Djafri A, Khelil A. Synthesis, Characterization, Linear and NLO Properties of Novel N-(2, 4-Dinitrobenzylidene)-3-Chlorobenzenamine Schiff Base: Combined Experimental and DFT Calculations. Journal of Electronic MaterialsJournal of Electronic Materials. 2021;50 :5282-5293.
Lahmar B, DRIDI H, Akakba A. Territorial health approach outputs of geo-governance of health facilities: case study of Batna, Algeria. GeoJournalGeoJournal. 2021;86 :2305-2319.
Lahmar B, DRIDI H, Akakba A. Territorial health approach outputs of geo-governance of health facilities: case study of Batna, Algeria. GeoJournalGeoJournal. 2021;86 :2305-2319.
Lahmar B, DRIDI H, Akakba A. Territorial health approach outputs of geo-governance of health facilities: case study of Batna, Algeria. GeoJournalGeoJournal. 2021;86 :2305-2319.
Rezzoug N. Théorie des nombres: Sur les suites primitives. 2021.
Sahli Y, Zitouni B, Hocine BM. Three-Dimensional Numerical Study of Overheating of Two Intermediate Temperature P-AS-SOFC Geometrical Configurations. In: Hydrogen Fuel Cell Technology for Stationary Applications. IGI Global ; 2021. pp. 186-222.
Sahli Y, Zitouni B, Hocine BM. Three-Dimensional Numerical Study of Overheating of Two Intermediate Temperature P-AS-SOFC Geometrical Configurations. In: Hydrogen Fuel Cell Technology for Stationary Applications. IGI Global ; 2021. pp. 186-222.
Sahli Y, Zitouni B, Hocine BM. Three-Dimensional Numerical Study of Overheating of Two Intermediate Temperature P-AS-SOFC Geometrical Configurations. In: Hydrogen Fuel Cell Technology for Stationary Applications. IGI Global ; 2021. pp. 186-222.
Douha D, Mokhtari A, Guessoum Z, Mandiau R. Towards a non monotonic agent testing. 2021 IEEE/ACS 18th International Conference on Computer Systems and Applications (AICCSA) [Internet]. 2021 :1-8. Publisher's VersionAbstract
Multi-agent systems research community has developed solutions to model dynamic and complex systems. Those solutions have generated a growing interest in a variety of domains such as robotics or distributed controls. It is therefore important to build solutions to analyze the basic mechanisms of multi-agent systems such as interaction. In this paper, we formalize the epistemic interaction, we propose to use default theory to describe state transitions. The introduction of such semantics allows characterizing the verification of agent behavior when dealing with new information. Therefore, we introduce semantics to establish a basis for exploiting the properties of the agent behavior and its messages.We propose to formalize and verify the response of an agent when it receives a new information from another agent of its environment. Our approach extends the actions initiated in the mA * [5] language by applying the Reiter’s default rules [32]. A simple example is used to illustrate our approach.

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