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Geometry optimization of PMSMs comparing full and fractional pitch winding configurations for aerospace actuation applications

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dc.contributor.author Tsampouris, EM en
dc.contributor.author Beniakar, ME en
dc.contributor.author Kladas, AG en
dc.date.accessioned 2014-03-01T02:53:38Z
dc.date.available 2014-03-01T02:53:38Z
dc.date.issued 2012 en
dc.identifier.issn 00189464 en
dc.identifier.uri https://dspace.lib.ntua.gr/xmlui/handle/123456789/36466
dc.subject Actuators en
dc.subject aerospace engineering en
dc.subject design optimization en
dc.subject finite element methods en
dc.subject permanent magnet motors en
dc.subject.other Comparative analysis en
dc.subject.other Concentrated winding en
dc.subject.other design optimization en
dc.subject.other Finite Element en
dc.subject.other Fractional slot en
dc.subject.other Geometry optimization en
dc.subject.other Manufacturing cost en
dc.subject.other Motor design en
dc.subject.other Multi objective en
dc.subject.other Optimization methodology en
dc.subject.other Permanent magnet motor en
dc.subject.other permanent magnet motors en
dc.subject.other Stable convergence en
dc.subject.other Winding configuration en
dc.subject.other Actuators en
dc.subject.other Aerospace engineering en
dc.subject.other Algorithms en
dc.subject.other Finite element method en
dc.subject.other Multiobjective optimization en
dc.subject.other Permanent magnets en
dc.subject.other Winding en
dc.subject.other AC motors en
dc.title Geometry optimization of PMSMs comparing full and fractional pitch winding configurations for aerospace actuation applications en
heal.type conferenceItem en
heal.identifier.primary 10.1109/TMAG.2011.2174206 en
heal.identifier.secondary http://dx.doi.org/10.1109/TMAG.2011.2174206 en
heal.identifier.secondary 6136790 en
heal.publicationDate 2012 en
heal.abstract Optimization of electromechanical aerospace actuators requires a multi-objective and comparative analysis in order to account for performance and manufacturing cost terms. This paper introduces a particular optimization methodology presenting stable convergence characteristics which has been applied to optimize the geometry of both Fractional Slot Concentrated Winding (FSCW) and Full Pitch Concentrated Winding (FPCW) permanent magnet motor configurations. The proposed algorithm combines technical and physical advantages of the FSCWs and FPCWs into an optimally shaped stator-winding configuration. The resultant motor design has been validated through a prototype and experimental results illustrated its suitability for aerospace actuation applications. © 2012 IEEE. en
heal.journalName IEEE Transactions on Magnetics en
dc.identifier.doi 10.1109/TMAG.2011.2174206 en
dc.identifier.volume 48 en
dc.identifier.issue 2 en
dc.identifier.spage 943 en
dc.identifier.epage 946 en


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