2018
Benmessaoud F, Chikhi A, Belkacem S.
Fuzzy Compensator of the Stator Resistance Variation of the DTC Driven Induction Motor Using Space Vector Modulation. In: Advances in Intelligent Systems and Computing. Vol. 845. © Springer Nature Switzerland AG 2019, ISBN: 978-3-319-99009-5 ; 2018.
Benmessaoud F, Chikhi A, Belkacem S.
Fuzzy Compensator of the Stator Resistance Variation of the DTC Driven Induction Motor Using Space Vector Modulation. International Conference on Advanced Intelligent Systems and Informatics. 2018 :89-97.
Benmessaoud F, Chikhi A, Belkacem S.
Fuzzy Compensator of the Stator Resistance Variation of the DTC Driven Induction Motor Using Space Vector Modulation. International Conference on Advanced Intelligent Systems and Informatics AISI 2018 [Internet]. 2018.
Publisher's VersionAbstract
This paper presents the contribution of a fuzzy controller to compensate the influence of stator resistance variation which can degrade the performance and stability of a direct torque control (DTC). Nevertheless, the original term DTC refers to a strategy that provides good performance, but it also has some negative aspects to the level of switching and inaccuracy in the engine model which recommends the use of a new technique the SVM which proposes an algorithm based on the modulation of the space vector in order to carry out a predictive regulation of the torque and flux of the induction motor and provides a fixed switching frequency, thus improving the dynamic response and the static behavior of the DTC.
Benmessaoud F, Chikhi A, Belkacem S.
Fuzzy Compensator of the Stator Resistance Variation of the DTC Driven Induction Motor Using Space Vector Modulation. International Conference on Advanced Intelligent Systems and Informatics. 2018 :89-97.
Benmessaoud F, Chikhi A, Belkacem S.
Fuzzy Compensator of the Stator Resistance Variation of the DTC Driven Induction Motor Using Space Vector Modulation. International Conference on Advanced Intelligent Systems and Informatics AISI 2018 [Internet]. 2018.
Publisher's VersionAbstract
This paper presents the contribution of a fuzzy controller to compensate the influence of stator resistance variation which can degrade the performance and stability of a direct torque control (DTC). Nevertheless, the original term DTC refers to a strategy that provides good performance, but it also has some negative aspects to the level of switching and inaccuracy in the engine model which recommends the use of a new technique the SVM which proposes an algorithm based on the modulation of the space vector in order to carry out a predictive regulation of the torque and flux of the induction motor and provides a fixed switching frequency, thus improving the dynamic response and the static behavior of the DTC.
Mazouz F, Belkacem S, Ouchen S, Harbouche Y, Abdessemed R.
Fuzzy control of a wind system based on the DFIG. In: Artificial Intelligence in Renewable Energetic Systems. Vol. 35. © Springer International Publishing AG 2018, ISBN: 978-3-319-73191-9 ; 2018.
Mazouz F, Belkacem S, Ouchen S, Harbouche Y, Abdessemed R.
Fuzzy control of a wind system based on the DFIG. In: Artificial Intelligence in Renewable Energetic Systems. Vol. 35. © Springer International Publishing AG 2018, ISBN: 978-3-319-73191-9 ; 2018.
Mazouz F, Belkacem S, Ouchen S, Harbouche Y, Abdessemed R.
Fuzzy control of a wind system based on the DFIG. In: Artificial Intelligence in Renewable Energetic Systems. Vol. 35. © Springer International Publishing AG 2018, ISBN: 978-3-319-73191-9 ; 2018.
Mazouz F, Belkacem S, Ouchen S, Harbouche Y, Abdessemed R.
Fuzzy control of a wind system based on the DFIG. In: Artificial Intelligence in Renewable Energetic Systems. Vol. 35. © Springer International Publishing AG 2018, ISBN: 978-3-319-73191-9 ; 2018.
Mazouz F, Belkacem S, Ouchen S, Harbouche Y, Abdessemed R.
Fuzzy control of a wind system based on the DFIG. In: Artificial Intelligence in Renewable Energetic Systems. Vol. 35. © Springer International Publishing AG 2018, ISBN: 978-3-319-73191-9 ; 2018.
Zermane H, Mouss H.
Fuzzy control of an industrial process system using internet and web services. International Journal of Industrial and Systems EngineeringInternational Journal of Industrial and Systems Engineering. 2018;29 :389-404.
Zermane H, Mouss H.
Fuzzy control of an industrial process system using internet and web services. International Journal of Industrial and Systems EngineeringInternational Journal of Industrial and Systems Engineering. 2018;29 :389-404.
BENDJEDDOU YACINE, Abdessemed R, Merabet E, Bentouhami L.
Fuzzy controller for self-excited dual star induction generator with online estimation ofmagnetizing inductance used in wind energy conversion. Rev. Roum. Sci. Techn.– Électrotechn. et Énerg. BucarestRev. Roum. Sci. Techn.– Électrotechn. et Énerg. Bucarest. 2018;63 :417–422.
AbstractInduction generator with direct field oriented control is preferred for high performance applications due to its excellent dynamic behavior. The accuracy for the dual star induction generator control in the remote area highly depends on estimating the undetectable machine parameter values, such as the magnetizing inductance and flux. The aim of this paper is to propose a novel direct rotor flux oriented control with online estimation of magnetizing current, which applied to stand alone dual star induction generator supplying a wind turbine in remote area. The induction generator is connected to nonlinear load through two PWM rectifiers. The results of the proposed technique based on the magnetizing inductance estimation that used to control of induction generator shows an importance to determine the rotor flux position.
BENDJEDDOU YACINE, Abdessemed R, Merabet E, Bentouhami L.
Fuzzy controller for self-excited dual star induction generator with online estimation ofmagnetizing inductance used in wind energy conversion. Rev. Roum. Sci. Techn.– Électrotechn. et Énerg. BucarestRev. Roum. Sci. Techn.– Électrotechn. et Énerg. Bucarest. 2018;63 :417–422.
AbstractInduction generator with direct field oriented control is preferred for high performance applications due to its excellent dynamic behavior. The accuracy for the dual star induction generator control in the remote area highly depends on estimating the undetectable machine parameter values, such as the magnetizing inductance and flux. The aim of this paper is to propose a novel direct rotor flux oriented control with online estimation of magnetizing current, which applied to stand alone dual star induction generator supplying a wind turbine in remote area. The induction generator is connected to nonlinear load through two PWM rectifiers. The results of the proposed technique based on the magnetizing inductance estimation that used to control of induction generator shows an importance to determine the rotor flux position.
BENDJEDDOU YACINE, Abdessemed R, Merabet E, Bentouhami L.
Fuzzy controller for self-excited dual star induction generator with online estimation ofmagnetizing inductance used in wind energy conversion. Rev. Roum. Sci. Techn.– Électrotechn. et Énerg. BucarestRev. Roum. Sci. Techn.– Électrotechn. et Énerg. Bucarest. 2018;63 :417–422.
AbstractInduction generator with direct field oriented control is preferred for high performance applications due to its excellent dynamic behavior. The accuracy for the dual star induction generator control in the remote area highly depends on estimating the undetectable machine parameter values, such as the magnetizing inductance and flux. The aim of this paper is to propose a novel direct rotor flux oriented control with online estimation of magnetizing current, which applied to stand alone dual star induction generator supplying a wind turbine in remote area. The induction generator is connected to nonlinear load through two PWM rectifiers. The results of the proposed technique based on the magnetizing inductance estimation that used to control of induction generator shows an importance to determine the rotor flux position.
BENDJEDDOU YACINE, Abdessemed R, Merabet E, Bentouhami L.
Fuzzy controller for self-excited dual star induction generator with online estimation ofmagnetizing inductance used in wind energy conversion. Rev. Roum. Sci. Techn.– Électrotechn. et Énerg. BucarestRev. Roum. Sci. Techn.– Électrotechn. et Énerg. Bucarest. 2018;63 :417–422.
AbstractInduction generator with direct field oriented control is preferred for high performance applications due to its excellent dynamic behavior. The accuracy for the dual star induction generator control in the remote area highly depends on estimating the undetectable machine parameter values, such as the magnetizing inductance and flux. The aim of this paper is to propose a novel direct rotor flux oriented control with online estimation of magnetizing current, which applied to stand alone dual star induction generator supplying a wind turbine in remote area. The induction generator is connected to nonlinear load through two PWM rectifiers. The results of the proposed technique based on the magnetizing inductance estimation that used to control of induction generator shows an importance to determine the rotor flux position.
Hanane Z.
Fuzzy Logic Control System in Medical Field. Proceedings of the International Conference on Industrial Engineering and Operations Management , July 26-27, [Internet]. 2018.
Publisher's VersionAbstract
Since the work of Lotfi Zadeh in 1965, the fuzzy logic continues to interest researchers and industrialists who gather around the "theories of uncertainty". The ramifications of fuzzy logic extend to fields as varied as control, the diagnosis of complex systems, bioinformatics, decision support. Research work is done in bio-informatic field where a system for decision support of anesthetic depth fuzzy basic. This study was carried out under general anesthesia with propofol. We use in our work some parameters influencing the patient’s condition during the course of surgery to control their effects on the depth of general anesthesia by fuzzy logic. In this paper, we propose using the environment MatLab R2017a to realize this application. A comparison between the predictions of the anesthesiologist and anesthetic predictions according to fuzzy logic of our work is done. This study will serve as a guide in developing new anesthesia control systems for patients.
Ali M, Noureddine S, Kheireddine CHAFAA.
Fuzzy Logic Controller using the Nonholonomic Constraints for Quadrotor Trajectory Tracking, e-ISSN 2600-7029. Revue des sciences et sciences de l’ingénieurRevue des sciences et sciences de l’ingénieur. 2018;Volume 6 :pp 51-59.
Ali M, Noureddine S, Kheireddine CHAFAA.
Fuzzy Logic Controller using the Nonholonomic Constraints for Quadrotor Trajectory Tracking, e-ISSN 2600-7029. Revue des sciences et sciences de l’ingénieurRevue des sciences et sciences de l’ingénieur. 2018;Volume 6 :pp 51-59.
Ali M, Noureddine S, Kheireddine CHAFAA.
Fuzzy Logic Controller using the Nonholonomic Constraints for Quadrotor Trajectory Tracking, e-ISSN 2600-7029. Revue des sciences et sciences de l’ingénieurRevue des sciences et sciences de l’ingénieur. 2018;Volume 6 :pp 51-59.