Determination of Thermal Contact Resistances for Small TENV Electrical Machine

In this paper, a thermal study of Synchronous Reluctant motor is proposed. A specific experimental method is applied in order to identify the thermal parameters, this method focus on the study of contact resistances and total thermal capacity. Generally, in the classical thermal modeling, the therma...

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Main Authors: Olfa MEKSI, Mohd Azri Hizami RASID, Alejandro OSPINA, Vincent LANFRANCHI
Format: Article
Language:English
Published: IFSA Publishing, S.L. 2016-03-01
Series:Sensors & Transducers
Subjects:
Online Access:http://www.sensorsportal.com/HTML/DIGEST/march_2016/Vol_198/P_2808.pdf
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spelling doaj-85086e4ea71f40268735f7a49bbef3572020-11-24T23:07:26ZengIFSA Publishing, S.L.Sensors & Transducers2306-85151726-54792016-03-0119834454 Determination of Thermal Contact Resistances for Small TENV Electrical MachineOlfa MEKSI0Mohd Azri Hizami RASID1Alejandro OSPINA2Vincent LANFRANCHI3Sorbonne University, University of Technology of Compiègne (UTC), EA 1006 Laboratory of Electromecanic, Centre of research Royallieu - 60319, Compiègne cedex, FranceSorbonne University, University of Technology of Compiègne (UTC), EA 1006 Laboratory of Electromecanic, Centre of research Royallieu - 60319, Compiègne cedex, FranceSorbonne University, University of Technology of Compiègne (UTC), EA 1006 Laboratory of Electromecanic, Centre of research Royallieu - 60319, Compiègne cedex, FranceSorbonne University, University of Technology of Compiègne (UTC), EA 1006 Laboratory of Electromecanic, Centre of research Royallieu - 60319, Compiègne cedex, FranceIn this paper, a thermal study of Synchronous Reluctant motor is proposed. A specific experimental method is applied in order to identify the thermal parameters, this method focus on the study of contact resistances and total thermal capacity. Generally, in the classical thermal modeling, the thermal contact resistance (TCR) is estimated by empirical values and the thermal capacities are calculated by analytical solutions. The originality of the proposed model is based on the complementarity between experimental procedure (machine at rest), thermal modeling and model reduction technique in order to determine these important parameters and validate results (thermal contact resistances and capacities). http://www.sensorsportal.com/HTML/DIGEST/march_2016/Vol_198/P_2808.pdfElectrical machineThermal modelingThermal contact resistanceIdentification methodExperimental analysis.
collection DOAJ
language English
format Article
sources DOAJ
author Olfa MEKSI
Mohd Azri Hizami RASID
Alejandro OSPINA
Vincent LANFRANCHI
spellingShingle Olfa MEKSI
Mohd Azri Hizami RASID
Alejandro OSPINA
Vincent LANFRANCHI
Determination of Thermal Contact Resistances for Small TENV Electrical Machine
Sensors & Transducers
Electrical machine
Thermal modeling
Thermal contact resistance
Identification method
Experimental analysis.
author_facet Olfa MEKSI
Mohd Azri Hizami RASID
Alejandro OSPINA
Vincent LANFRANCHI
author_sort Olfa MEKSI
title Determination of Thermal Contact Resistances for Small TENV Electrical Machine
title_short Determination of Thermal Contact Resistances for Small TENV Electrical Machine
title_full Determination of Thermal Contact Resistances for Small TENV Electrical Machine
title_fullStr Determination of Thermal Contact Resistances for Small TENV Electrical Machine
title_full_unstemmed Determination of Thermal Contact Resistances for Small TENV Electrical Machine
title_sort determination of thermal contact resistances for small tenv electrical machine
publisher IFSA Publishing, S.L.
series Sensors & Transducers
issn 2306-8515
1726-5479
publishDate 2016-03-01
description In this paper, a thermal study of Synchronous Reluctant motor is proposed. A specific experimental method is applied in order to identify the thermal parameters, this method focus on the study of contact resistances and total thermal capacity. Generally, in the classical thermal modeling, the thermal contact resistance (TCR) is estimated by empirical values and the thermal capacities are calculated by analytical solutions. The originality of the proposed model is based on the complementarity between experimental procedure (machine at rest), thermal modeling and model reduction technique in order to determine these important parameters and validate results (thermal contact resistances and capacities).
topic Electrical machine
Thermal modeling
Thermal contact resistance
Identification method
Experimental analysis.
url http://www.sensorsportal.com/HTML/DIGEST/march_2016/Vol_198/P_2808.pdf
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