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dc.contributor.authorAli, S.
dc.contributor.authorHasanien, H.
dc.contributor.authorMuyeen, S.M.
dc.date.accessioned2018-08-08T04:41:29Z
dc.date.available2018-08-08T04:41:29Z
dc.date.created2018-08-08T03:51:00Z
dc.date.issued2018
dc.identifier.citationAli, S. and Hasanien, H. and Muyeen, S. 2018. Three-dimension core loss analysis of transverse flux linear motor based on the improved Steinmetz equation,in Proceedings of the Autralasian Universities Power Engineering Conferenc (AUPEC), Nov 19-22 2017, pp. 1-6. Melbourne, VIC, Australia: IEEE.
dc.identifier.urihttp://hdl.handle.net/20.500.11937/69558
dc.identifier.doi10.1109/AUPEC.2017.8282472
dc.description.abstract

This paper presents a novel three-dimension (3D) core loss analysis of the transverse flux linear motor (TFLM) with inner mover type based on the improved Steinmetz equation. For more accurate results, the magnetic flux waveforms of the motor are predicted by performing 3D finite element (FE) transient analysis. The stator phase winding is excited in the FE model and a good meshing is created in the model including a high density through the air gap. The winding is fed from a dc source via a single-phase full bridge inverter. The magnetic material is exposed to non-sinusoidal magnetic flux waveforms. The improved Steinmetz equation is applied to estimate the core losses. The Steinmetz parameters are determined by using the genetic algorithm (GA) technique. MATLAB GA optimization toolbox is used for this purpose. The transient analysis of the TFLM is performed using MagNet software. The total core losses are estimated in the 3D FE model. With this proposed improved Steinmetz equation, the core losses of the TFLM can be accurately estimated.

dc.publisherIEEE
dc.titleThree-dimension core loss analysis of transverse flux linear motor based on the improved Steinmetz equation
dc.typeConference Paper
dcterms.source.volume2017-November
dcterms.source.startPage1
dcterms.source.endPage6
dcterms.source.title2017 Australasian Universities Power Engineering Conference, AUPEC 2017
dcterms.source.series2017 Australasian Universities Power Engineering Conference, AUPEC 2017
dcterms.source.isbn9781538626474
dcterms.source.conferenceAustralasian Universities Power Engineering Conference (AUPEC)
curtin.departmentSchool of Electrical Engineering, Computing and Mathematical Science (EECMS)
curtin.accessStatusFulltext not available


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