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Athanasios Maglaras _M'85-93_ M'06_ was born in Greece in 1948

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Athanasios Maglaras _M'85-93_ M'06_ was born in Greece in 1948 Powered By Docstoc
					Athanasios Maglaras (IEEE M‟85-93, M‟06) was born in Greece in 1948. He
received the Electrical and Mechanical Engineering degree from the National
Technical University of Athens, in Greece, in 1971, a M.Sc. degree in 1985, and his
Ph.D. from the National Technical University of Athens, in Greece in 2010. Since
1980 he is an Professor of Technological Education Institute (T.E.I.) of Larissa in
Greece. He had been head of the Electrical Engineering Department of the T.E.I. of
Larissa for 6 years, and he is the head of the High Voltage and CAD/CAE Laboratory
in the T.E.I. of Larissa since 1990. He is a member of the Technical Chamber of
Greece, the IEEE, and the CIGRE. The main research interests are High Voltages,
Electromagnetic Field Analysis, and CAD/CAE. He was supervisor and partner in
many European research and educational projects. He is author of 5 books concerning
High Voltages, Electric Fields, CAD/CAE, Thermodynamics and more than 30 papers
in scientific magazines and conferences, as well as in pan-Hellenic educational
meetings.

Papers.
[1] Maglaras A., Topalis F. V., “Influence of Ground and Corona Currents on
     Dielectric Behaviour of Small Air Gaps”, IEEE Trans. Dielectr. Electr. Insul,
     Vol. 16, No 1, pp. 32-41, 2009.
[2] Maglaras A., Maglaras L. and Giannakopoulou K., “Influence of the Electric
     Field Inhomogeneity, the Voltage Polarity and the Electrode Grounding on the
     Dielectric Behavior of Small Air Gaps” 3nd Intern. Conf. Experiments, Process,
     System Modeling, Simulation & Optimization (3nd EpsMsO), Athens, 2009.
[3] Maglaras A., Topalis F. V., “The Influence of the Grounding of the Electrodes
     and the Corona Current to the Dielectric Behavior of the Air Gaps” Int. Conf.
     Med Power 08, Thessalonica, 2008.
[4] Leandros A. Maglaras, Athanasios L. Maglaras, Frangiskos V. Topalis “The
     influence of the Effect of Grounding and Corona Current to the Field Strength
     the Corona Onset and the Breakdown Voltage of Small Air Gaps”, WSEAS
     TRANSACTIONS on POWER SYSTEMS, Issue 1, Volume 3, January 2008,
     ISSN: 1790-5060.
[5] Α. Μαγλαπάρ, Κ. Γιαννακοπούλος “Η επίδραζη Τοσ θαινόμενοσ Της γείωζης
     Και ηοσ ρεύμαηος Corona ζηη διηλεκηρική ζσμπεριθορά μικρών διακένων αέρα”,
     ΢ύνοδορ Δπιζηημονικήρ Δπιηποπήρ Cigre, “Αθήνα 2009”.
[6] Maglaras A., Maglaras L., “The Influence of the Ground Effect, the Field strength
     and the Field Factor on Corona an Breakdown of Small Rod-Plate air Gaps”,
     Proceedings of WSEAS Conference on New Aspects of Systems Theory and
     Scientific Computational, pp. 276-283, Rhodes Island, Greece, August 2008.
[7] Maglaras A., Maglaras L., “The influence of the Corona Current to the Ground
     and the Polarity Effect of small air gaps”, proceedings of the 6th WSEAS Proc.
     of international conference on Applications of Electrical Engineering (AEE‟
     07), pp. 89-95, Istanbul, Turkey, May 27-29, 2007.
[8] Maglaras A., Maglaras L., “The influence of the Ground Effect on the Corona
     Leakage Current in Small air Gaps”, Proceedings of WSEAS Conference on
     Electric Power Systems, High Voltages, Electric Machines, Venice, Italy, pp.
     247-253, November 2007.
[9] Maglaras A., Maglaras L., “The Polarity effect and the corona current in small
     air gaps“, 2nd Intern. Conf. Experiments, Process, System Modeling, Simulation
     & Optimization (2nd EpsMsO), Vol. III, pp. 1063-1070, Athens, Greece, 2007.
[10] Maglaras A., Maglaras L. and Dafopoulos V., “The ground effect, the polarity
     effect, and the mirror effect in small rod-plate and rod-rod air gaps stressed by
     dc voltage”, Proceedings of ISH 15th Intern. Sympos. High Voltage Engineering,
     Ljubljana, Slovenia, T4-334, p. 181, 2007.
[11] Maglaras A., Maglaras L., “The phenomenon of Ground Effect in contradiction
     to the Polarity Effect in rod –plate air gaps”, Proceedings of WSEAS, IASME
     International Conference on Electrical Power Systems, Chalkida, Evia island,
     Greece, 8-10 May, 2006.
[12] Maglaras A., “Simulation Analysis Along with Experimental Investigation of the
     Ground Effect in Small Rod-Plate Air Gaps”, Proceedings of the 2nd IC-SCCE,
     Athens pp., 2006.
[13] Maglaras L., Maglaras A., „The Influence of the Ground Effect on the Corona
     onset voltage and the Breakdown Voltage of Small Rod-Plate Air Gaps”,
     WSEAS, Transactions on Power Systems, Issue 5, Volume 1, pp. 817-824, May
     2006.
[14] Maglaras A., Maglara St., „The Ground Effect in small rod-plate air gaps in
     connection to the Corona effects and the Polarity Effect”, WSEAS, Transactions
     on Systems, Issue 5, Volume 5, pp. 1022-1030, May 2006.
[15] Maglaras A., Maglaras L., “The Influence of The Ground Effect on the Corona
     Onset and the Breakdown voltage of Small Rod-Rod Air Gaps”, Proceedings of
     the 6th WSEAS Conference on Systems Theory and Scientific Computational,
     Crete, Greece, pp. 138-144, 2006.
[16] Maglaras A., Maglaras L., “Experimental investigation along with simulation
     analysis of small rod – plate air gaps with or without a Barrier: The Ground
     Effect”, Proceedings of WSEAS – ISTASC, Malta, 2005.
[17] Maglaras L., Maglaras A., Drigojias I. and Maglara St., “The Ground Effect and
     the Mirror effect in small air gap”‟, WSEAS, Transactions on Systems, Issue
     11, Volume 5, pp. 2522-2529, November 2006.
[18] Maglaras L., Maglaras A. and Drigojias J., “Investigation of the Ground Effect
     in connection to the Barrier Effect in rod-plate air gaps”, WSEAS –
     Transactions on Power Systems, Issue 2, Volume 1, pp 474-481, February
     2006.
[19] Maglaras A., Maglara S., “The Ground Effect and the corona leakage effect in
     correlation with the Polarity Effect in small rod-plate air gaps”. Proceedings of
     WSEAS 5th Conference on Applications of Electrical Engineering (AEE‟06),
     Prague, Czech Republic, 8-10 March, 2006
[20] Maglaras A., Maglaras L., „The Ground Effect influence on the rod-plate air
     gaps with or without dielectric barrier, at breakdown”, WSEAS – WSEAS –
     Transactions on Systems- Issue 11, Volume 4, November, pp. 2031-2038,
     November 2005.
[21] Maglaras A., Maglaras L. and Drigojias J., “Modeling and analysis along with
     experimental investigation of the ground effect in rod-plate air gaps with or
     without barrier”, 5th WSEAS/IASME Intern. Conf. Electric Power Systems,
     High Voltages, Electric Machines, (POWER‟05), Tenerife, Spain, pp. 474-481,
     2005.
[22] Maglaras A. Andritsos John, Soultis George, Maglaras L., “New methods in
     experimental work along with simulation modeling and analysis in the
     laboratories of the Electrical Engineering Department of the T.E.I. of Larissa”,
     Proc. Of the Int. conf. on engineering Education, Athens, Greece, 2005.
[23] Maglaras A., Maglaras L., J. Drigojias, “Investigation of the Ground Effect in
     connection to the Barrier Effect in rod-plate air gaps”, WSEAS Transactions
     on Power Systems , Issue 2, Volume 1, pages 474-481, February, 2005.
[24] Maglaras A., Maglaras L., “Numerical modeling and analysis of electric field
     distribution in rod – plate air gaps, with or without barrier, stressed by
     breakdown voltages”, 1st Intern. Conf.       Experiments, Process, System,
                                               st
     Modeling, Simulation & Optimization (1 IC-EpsMsO), Athens, Greece,
     Volume III, pp. 729-737, 2005.
[25] Maglaras A., “Numerical analysis of electric field in air gaps, related to the
     Barrier Effect”, Proceedings of 1st Intern. Conf. From Scientific Computing to
     Computational Engineering (1st IC-SCCE), Vol. II, pp. 857-865, Athens, 2004.
[26] Maglaras A., Maglaras L., “Modeling and analysis of electric field distribution
     in air gaps, stressed by breakdown voltage”, Proceedings of int. conference of
     WSEAS, MMACTEE, Athens, December 2004.
[27] Maglaras A., Maglaras L., “Modeling and analysis of electric field distribution
     in air gaps, stressed by breakdown voltage”, WSEAS Transactions on Systems,
     Issue 10, Issue 3, 10, Volume 3, pp. 3144-3151, December, 2004.
[28] Μαγλαπάρ Α. Λ., “Ανάλσζη ηοσ Ηλεκηροζηαηικού Πεδίοσ ζε Διάκενα Αέρα με
     ηην Τετνική Monte Carlo”, Δ.Μ.Π., Μεηαπηςσιακή επγαζία, Δ.Μ.Π. Αθήνα,
     2003.
[29] Μαγλαπάρ Α. Λ., “Ανάλσζη ηοσ Ηλεκηροζηαηικού Πεδίοσ ζε Διάκενα Αέρα με
     διάθραγμα”, Δ.Μ.Π., Μεηαπηςσιακή επγαζία, Δ.Μ.Π. Αθήνα, 2003.
[30] Μαγλαπάρ Α. Λ., «Το Φαινόμενο ηοσ Διαθράγμαηος (Barrier Effect) ζε Μικρά
     και Μεζαία Ανομοιογενή Διάκενα Αέρα», Έκθεζη Ππόηαζηρ και Πποόδος
     Γιδακηοπικήρ Γιαηπιβήρ, Δ.Μ.Π. Αθήνα, 2004.
[31] Μαγλαπάρ Α., « Σο θαινόμενο ηηρ γείωζηρ και ηο θαινόμενο ηος πεύμαηορ
     Corona», Ημεπίδα με ηίηλο «΢ύγσπονερ Δξελίξειρ ζηοςρ Σομείρ ηηρ Δνέπγειαρ
     ηων Σηλεπικοινωνιών και ηων Αςηομαηιζμών», Σ.Δ.Ι. Λάπιζαρ, 2005
[32] Μαγλαπάρ Α., Μαγλαπά ΢η., «ΣΟ ΝΔΟ ΠΡΟΓΡΑΜΜΑ ΢ΠΟΤΓΩΝ ΣΟΤ
   ΣΜΗΜΑΣΟ΢        ΗΛΔΚΣΡΟΛΟΓΙΑ΢     ΣΟΤ     Σ.Δ.Ι. ΛΑΡΙ΢Α΢ -
   ΢ΤΜΠΔΡΑ΢ΜΑΣΑ, ΠΡΟΒΛΗΜΑΣΑ, ΠΡΟΣΑ΢ΔΙ΢», Πανελλήνια Ημεπίδα,
   για ηο ΠΡΟΓΡΑΜΜΑ ΢ΠΟΤΓΩΝ ΗΛΔΚΣΡΟΛΟΓΙΑ΢ ΢ΣΑ Σ.Δ.Ι., Σ.Δ.Ι.
   Υαλκίδαρ, Γεκέμβπιορ 2005.
[33] Μαγλαπάρ Α., «ΣΟ ΝΔΟ ΠΡΟΓΡΑΜΜΑ ΢ΠΟΤΓΩΝ ΚΑΙ ΟΙ
   ΓΡΑ΢ΣΗΡΙΟΣΗΣΔ΢ ΣΟΤ ΣΜΗΜΑΣΟ΢ ΗΛΔΚΣΡΟΛΟΓΙΑ΢ ΣΟΤ Σ.Δ.Ι.
   ΛΑΡΙ΢Α΢», Πανελλήνια Ημεπίδα ζηιρ ΢ύγσπονερ Δξελίξειρ ζηοςρ Σομείρ ηηρ
   Δνέπγειαρ ηων Σηλεπικοινωνιών και ηων Αςηομαηιζμών, Σ.Δ.Ι. Λάπιζαρ, Μάιορ
   2005.

				
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