Armature Reaction Field and Inductance Calculations for a Permanent Magnet Linear Synchronous Machine Based on Subdomain Model
This paper proposes an analytical technique for calculating the armature reaction field and inductance of permanent magnet linear synchronous machines based on a subdomain analytical model. The analytical solutions based on the subdomain model in terms of a 2-D Cartesian coordinate system are obtain...
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Veröffentlicht in: | IEEE transactions on magnetics 2017-06, Vol.53 (6), p.1-4 |
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creator | Shin, Kyung-Hun Cho, Han-Wook Lee, Sung-Ho Choi, Jang-Young |
description | This paper proposes an analytical technique for calculating the armature reaction field and inductance of permanent magnet linear synchronous machines based on a subdomain analytical model. The analytical solutions based on the subdomain model in terms of a 2-D Cartesian coordinate system are obtained using continuous and Neumann boundary conditions. The analytical results of the magnetic field are validated extensively with finite element method (FEM). Based on these solutions, the inductance is also determined analytically. In addition, we improve the accuracy of the analysis by using a simplified method of calculating the end inductance. Finally, the predictions are compared with a 3-D FEM and measured data to confirm the validity of the analysis methods presented in this paper. |
doi_str_mv | 10.1109/TMAG.2017.2665661 |
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The analytical solutions based on the subdomain model in terms of a 2-D Cartesian coordinate system are obtained using continuous and Neumann boundary conditions. The analytical results of the magnetic field are validated extensively with finite element method (FEM). Based on these solutions, the inductance is also determined analytically. In addition, we improve the accuracy of the analysis by using a simplified method of calculating the end inductance. 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The analytical solutions based on the subdomain model in terms of a 2-D Cartesian coordinate system are obtained using continuous and Neumann boundary conditions. The analytical results of the magnetic field are validated extensively with finite element method (FEM). Based on these solutions, the inductance is also determined analytically. In addition, we improve the accuracy of the analysis by using a simplified method of calculating the end inductance. Finally, the predictions are compared with a 3-D FEM and measured data to confirm the validity of the analysis methods presented in this paper.</description><subject>Accuracy</subject><subject>Analytical models</subject><subject>Armature</subject><subject>Armature reaction field</subject><subject>Artificial intelligence</subject><subject>Boundary conditions</subject><subject>Cartesian coordinates</subject><subject>Finite element method</subject><subject>Inductance</subject><subject>Magnetic flux</subject><subject>Magnetism</subject><subject>Mathematical models</subject><subject>permanent magnet linear synchronous machine (PMLSM)</subject><subject>Stator cores</subject><subject>subdomain model</subject><subject>Synchronous machines</subject><issn>0018-9464</issn><issn>1941-0069</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2017</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNo9kD1PwzAQhi0EEqXwAxCLJeYUO7GdeCwVLZVagWiZLce50FSpXexk6MJvx1ER0-nu3vc-HoTuKZlQSuTTdj1dTFJC80kqBBeCXqARlYwmhAh5iUaE0CKRTLBrdBPCPqaMUzJCP1N_0F3vAX-ANl3jLJ430FZY2wovbdWbTlsDeKZb07d6EARcO481fodotWA7vNZfFjq8aixojzcna3beWdeH2DG7WMXPOkCF4_BNX1buoBuL166C9hZd1boNcPcXx-hz_rKdvSart8VyNl0lJpVZl-SG0UoKknHC4nsVL0RdGyNKQ2KhFKIGAClLCizXvDZpIQwzhaAFl5oBycbo8Tz36N13D6FTe9d7G1cqKgkrMhFpRBU9q4x3IXio1dE3B-1PihI1YFYDZjVgVn-Yo-fh7GniCf_6vGBcpDz7BWfBebo</recordid><startdate>20170601</startdate><enddate>20170601</enddate><creator>Shin, Kyung-Hun</creator><creator>Cho, Han-Wook</creator><creator>Lee, Sung-Ho</creator><creator>Choi, Jang-Young</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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The analytical solutions based on the subdomain model in terms of a 2-D Cartesian coordinate system are obtained using continuous and Neumann boundary conditions. The analytical results of the magnetic field are validated extensively with finite element method (FEM). Based on these solutions, the inductance is also determined analytically. In addition, we improve the accuracy of the analysis by using a simplified method of calculating the end inductance. Finally, the predictions are compared with a 3-D FEM and measured data to confirm the validity of the analysis methods presented in this paper.</abstract><cop>New York</cop><pub>IEEE</pub><doi>10.1109/TMAG.2017.2665661</doi><tpages>4</tpages><orcidid>https://orcid.org/0000-0002-7092-6365</orcidid></addata></record> |
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subjects | Accuracy Analytical models Armature Armature reaction field Artificial intelligence Boundary conditions Cartesian coordinates Finite element method Inductance Magnetic flux Magnetism Mathematical models permanent magnet linear synchronous machine (PMLSM) Stator cores subdomain model Synchronous machines |
title | Armature Reaction Field and Inductance Calculations for a Permanent Magnet Linear Synchronous Machine Based on Subdomain Model |
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