Rotational magnetic properties of SMC materials in 3-D flux electrical machines

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dc.contributor.author Li, Y
dc.contributor.author Yang, Q
dc.contributor.author Zhang, C
dc.contributor.author Zhu, J
dc.contributor.author Wang, Y
dc.contributor.author Xu, W
dc.contributor.author Hu, J
dc.contributor.editor Technical Committee
dc.date.accessioned 2012-02-02T11:08:59Z
dc.date.issued 2010-01
dc.identifier.citation Proc. AUPEC 2010 - 20th Australasian Universities Power Engineering Conference, 2010, pp. 1 - 6
dc.identifier.isbn 978-0-473-18236-6
dc.identifier.other E1 en_US
dc.identifier.uri http://hdl.handle.net/10453/16413
dc.description.abstract Soft magnetic composite (SMC) materials are widely applied in three-dimensional (3-D) magnetic flux electrical machines. Conventional methods for analyzing the magnetic properties of SMC materials based on alternating excitation are not comprehensive due to the rotational magnetic properties in the rotating electrical machines. In order to completely understand and model the magnetization process and optimize design of the 3-D flux electrical machines, rotational magnetic properties of SMC materials should be measured and analyzed. By using an improved 3-D magnetic property tester, this paper presents the measurement of rotational magnetic properties, such as magnetic flux density vector B, magnetic field strength vector H and core loss. Moreover, 3-D tester model and magnetic field distribution are analyzed by means of finite element method.
dc.publisher IEEE
dc.title Rotational magnetic properties of SMC materials in 3-D flux electrical machines
dc.type Conference Proceeding
dc.description.version Published
dc.parent Proc. AUPEC 2010 - 20th Australasian Universities Power Engineering Conference
dc.journal.number en_US
dc.publocation USA en_US
dc.identifier.startpage 1 en_US
dc.identifier.endpage 6 en_US
dc.cauo.name FEIT.Faculty of Engineering & Information Technology en_US
dc.conference Verified OK en_US
dc.conference Australasian Universities Power Engineering Conference
dc.for 0906 Electrical and Electronic Engineering
dc.personcode 910870
dc.personcode 102593
dc.personcode 105670
dc.personcode 112293
dc.percentage 100 en_US
dc.classification.name Power and Energy Systems Engineering (excl. Renewable Power) en_US
dc.classification.type FOR-08 en_US
dc.edition en_US
dc.custom Australasian Universities Power Engineering Conference en_US
dc.date.activity 20101205 en_US
dc.date.activity 2010-12-05
dc.location.activity Christchurch, New Zealand en_US
dc.description.keywords soft magnetic composite (SMC); claw pole PM motor; 3-D magnetic tester; sensing coil; anisotropy; rotational magnetic properties en_US
dc.description.keywords Science & Technology
dc.description.keywords Life Sciences & Biomedicine
dc.description.keywords Fisheries
dc.description.keywords Marine & Freshwater Biology
dc.description.keywords FISHERIES
dc.description.keywords MARINE & FRESHWATER BIOLOGY
dc.description.keywords chemical marking
dc.description.keywords fluorescence intensity
dc.description.keywords tag
dc.description.keywords ALIZARIN RED-S
dc.description.keywords OTOLITHS
dc.description.keywords OXYTETRACYCLINE
dc.description.keywords TETRACYCLINE
dc.description.keywords SUITABILITY
dc.description.keywords IMMERSION
dc.description.keywords RETENTION
dc.description.keywords SALMON
dc.description.keywords PERCH
dc.description.keywords TROUT
dc.description.keywords soft magnetic composite (SMC)
dc.description.keywords claw pole PM motor
dc.description.keywords 3-D magnetic tester
dc.description.keywords sensing coil
dc.description.keywords anisotropy
dc.description.keywords rotational magnetic properties
pubs.embargo.period Not known
pubs.organisational-group /University of Technology Sydney
pubs.organisational-group /University of Technology Sydney/Faculty of Engineering and Information Technology
pubs.organisational-group /University of Technology Sydney/Faculty of Engineering and Information Technology/School of Elec, Mech and Mechatronic Systems
utslib.copyright.status Closed Access
utslib.copyright.date 2015-04-15 12:17:09.805752+10
utslib.collection.history Closed (ID: 3)


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