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AuthorAbdel-Khalik, Ayman S.
AuthorAhmed, Shehab
AuthorMassoud, Ahmed M.
Available date2020-12-03T11:24:55Z
Publication Date2017
Publication NameIEEE Transactions on Industrial Electronics
ResourceScopus
URIhttp://dx.doi.org/10.1109/TIE.2016.2626240
URIhttp://hdl.handle.net/10576/17183
AbstractThis paper proposes a new winding layout for high-power medium-voltage nine-phase induction machines (IMs) based on a single-layer concentrated winding layout having a unity winding factor. The machine is fundamentally an asymmetrical nine-phase IM, where phases are connected in such a way as to provide six terminals that are fed from two three-phase inverters. Compared to a conventional asymmetrical six-phase IM with the same stator and copper volumes, it provides improved torque density, a higher torque/current ratio, and a simpler winding layout. Finite-element simulation is used to compare the proposed winding layout with a conventional split-phase six-phase IM to assess the claimed merits. A 1.5-hp prototype IM is also used for experimental verification. The experimental results are given under both healthy and fault conditions, where the faulty converter is completely disabled. The achievable derating factors under this case are then given and compared with those of conventional six-phase IMs.
SponsorThis work was supported by the Qatar National Research Fund (a member of the Qatar Foundation) under NPRP Grant 6-213-2-090.
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
SubjectAsymmetrical winding
fault tolerant
induction machine (IM)
multiphase machines
nine-phase machine
single-layer winding
six-phase machine
stator winding configuration
TitleA Nine-Phase Six-Terminal Concentrated Single-Layer Winding Layout for High-Power Medium-Voltage Induction Machines
TypeArticle
Pagination1796-1806
Issue Number3
Volume Number64


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