Finite-element assisted method to reduce harmonic content in the air-gap flux density of a high-temperature superconducting coreless rotor generator
Finite-element assisted method to reduce harmonic content in the air-gap flux density of a high-temperature superconducting coreless rotor generator
An investigation to reduce harmonic content in the air-gap flux density of a high-temperature superconducting synchronous generator with a coreless rotor is reported. Three-dimensional finite-element field simulation has been used to predict the voltage waveform of the machine. A simple technique was applied to guide the design process. This allowed the waveform to be improved using a small number of finite-element models.
485-492
Lukasik, B.
6958f5bf-8199-411d-80a2-c1353fd46202
Goddard, K.F.
fe2a2194-8b55-43c1-bdca-341691b71b2d
Sykulski, J.K.
d6885caf-aaed-4d12-9ef3-46c4c3bbd7fb
30 October 2008
Lukasik, B.
6958f5bf-8199-411d-80a2-c1353fd46202
Goddard, K.F.
fe2a2194-8b55-43c1-bdca-341691b71b2d
Sykulski, J.K.
d6885caf-aaed-4d12-9ef3-46c4c3bbd7fb
Lukasik, B., Goddard, K.F. and Sykulski, J.K.
(2008)
Finite-element assisted method to reduce harmonic content in the air-gap flux density of a high-temperature superconducting coreless rotor generator.
IET Science, Measurement & Technology, 2 (6), .
Abstract
An investigation to reduce harmonic content in the air-gap flux density of a high-temperature superconducting synchronous generator with a coreless rotor is reported. Three-dimensional finite-element field simulation has been used to predict the voltage waveform of the machine. A simple technique was applied to guide the design process. This allowed the waveform to be improved using a small number of finite-element models.
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IET-ProcSMT-vol2no6page485.pdf
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Published date: 30 October 2008
Additional Information:
doi: 10.1049/iet-smt:20080091
Organisations:
EEE
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Local EPrints ID: 266848
URI: http://eprints.soton.ac.uk/id/eprint/266848
ISSN: 1751-8822
PURE UUID: 694a0b5a-bb62-4966-9464-74e2ab394eaf
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Date deposited: 30 Oct 2008 14:01
Last modified: 15 Mar 2024 02:34
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Author:
B. Lukasik
Author:
K.F. Goddard
Author:
J.K. Sykulski
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