Transient electromagnetic analysis coupled to electric circuits and motion
Transient electromagnetic analysis coupled to electric circuits and motion
This paper presents implementation details of coupling circuit equations and motion with two dimensional finite clement models for transient magnetic analysis. Finite elements with incomplete shape functions are used in a novel way to handle the interface between the moving and stationary parts of the mesh. The final system of equations can then be solved using adaptive time stepping. Two examples are presented, a generator, which is coupled to motion and a motor, which is coupled to external circuits.
3182-5
Biddlecombe, C.S.
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Simpkin, J.
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Jay, A.P.
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Sykulski, J.K.
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Lapaul, S.
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September 1998
Biddlecombe, C.S.
8d4608f2-ea9d-4c04-b3d3-d8857713f619
Simpkin, J.
a036263c-627d-4160-8181-ff915548dbe1
Jay, A.P.
8614936c-eefd-4dc0-ac6a-d864d2d157c7
Sykulski, J.K.
d6885caf-aaed-4d12-9ef3-46c4c3bbd7fb
Lapaul, S.
18a04d4b-675f-4f12-bef1-a04c74563066
Biddlecombe, C.S., Simpkin, J., Jay, A.P., Sykulski, J.K. and Lapaul, S.
(1998)
Transient electromagnetic analysis coupled to electric circuits and motion.
IEEE Transactions on Magnetics, 34 (5), .
(doi:10.1109/20.717746).
Abstract
This paper presents implementation details of coupling circuit equations and motion with two dimensional finite clement models for transient magnetic analysis. Finite elements with incomplete shape functions are used in a novel way to handle the interface between the moving and stationary parts of the mesh. The final system of equations can then be solved using adaptive time stepping. Two examples are presented, a generator, which is coupled to motion and a motor, which is coupled to external circuits.
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Published date: September 1998
Organisations:
EEE
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Local EPrints ID: 253487
URI: http://eprints.soton.ac.uk/id/eprint/253487
ISSN: 0018-9464
PURE UUID: 2b2ef48f-50e8-4232-803b-fe28b4d679a4
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Date deposited: 10 Oct 2003
Last modified: 15 Mar 2024 02:34
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Author:
C.S. Biddlecombe
Author:
J. Simpkin
Author:
A.P. Jay
Author:
J.K. Sykulski
Author:
S. Lapaul
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