Work place: LSEI, Department of Electrical Engineering, University of Sciences and Technology Houari Boumediene, Algeria
E-mail: mboudour@ieee.org
Website:
Research Interests: Engineering
Biography
Prof. Mohamed Boudour received the B.Sc., M.Sc. and the Ph.D. degrees in electrical engineering from the Polytechnic Institute of Algiers, Algeria in 1991, 1994 and 2004 respectively. Since January 1993, he has been with the University of Sciences and Technology Houari Boumediene (USTHB) of Algiers, Algeria as a teacher and researcher and a Fulbright Fellowship during 2005-2006 in the University of Washington (Seattle, USA). He is now an associate professor in U.S.T.H.B. and the Director of the Industrial and Electrical Systems Research Laboratory (LSEI) since 2007. Pr. Boudour is senior member of Institute of Electrical and Electronics Engineers (IEEE), USA, and president of PES chapter in IEEE Algeria subsection. His main interests are power systems stability, security assessment, control, optimization, power system protection, application of intelligent and metaheuristic in electrical engineering.
By Mohamed Zellagui Rabah Benabid Mohamed Boudour Abdelaziz Chaghi
DOI: https://doi.org/10.5815/ijisa.2015.02.02, Pub. Date: 8 Jan. 2015
Optimal coordination of Inverse Definite Minimum Time (IDMT) direction overcurrent relays in the power systems in the presence of multiple Thyristor Controller Series Capacitor (TCSC) on inductive and capacitive operation mode on meshed power system is studied in this paper. The coordination problem is formulated as a non-linear constrained mono-objective optimization problem. The objective function of this optimization problem is the minimization of the operation time (T) of the associated relays in the systems, and the decision variables are: the time dial setting (TDS) and the pickup current setting (IP) of each relay. To solve this complex non linear optimization problem, a variant of evolutionary optimization techniques named Biogeography Based Optimization (BBO) is used. The proposed algorithm is validated on IEEE 14-bus transmission network test system considering various scenarios. The obtained results show a high efficiency of the proposed method to solve such complex optimization problem, in such a way the relays coordination is guaranteed for all simulation scenarios with minimum operating time. The results of new relay setting are compared to other optimization algorithms.
[...] Read more.By Rabah Benabid Mohamed Zellagui Abdelaziz Chaghi Mohamed Boudour
DOI: https://doi.org/10.5815/ijisa.2014.02.06, Pub. Date: 8 Jan. 2014
This paper considers the impact of the Inductive Fault Current Limiter (IFCL) on directional overcurrent relays coordination. The coordination problem is formulated as a non-linear constrained mono-objective optimization problem. The objective function of this optimization problem is the minimization of the operation time of the associated relays in the systems, and the decision variables are: the time dial setting (TDS) and the pickup current setting (IP) of each relay. To solve this complex non linear optimization problem, a variant of optimization algorithms named Firefly Algorithm (FA) is used. The proposed method is tested on 8-bus power transmission systems test systems considering the influences of current relay under three-phases short-circuit with and without IFCL for different locality. The results show the effectiveness of the solution.
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