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A Novel Five-Phase Fractional Slot Concentrated Winding with Low Space Harmonic Contents

Article dans une revue avec comité de lecture
Auteur
ZHAO, B.
303447 Shandong Jiaotong University [Jinan]
GONG, J.
303447 Shandong Jiaotong University [Jinan]
TONG, T.
303447 Shandong Jiaotong University [Jinan]
463362 Nanchang University
XU, Y.
303447 Shandong Jiaotong University [Jinan]
ccSEMAIL, Eric
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
NGUYEN, Ngac Ky
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
GILLON, Frédéric
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]

URI
http://hdl.handle.net/10985/20777
DOI
10.1109/tmag.2021.3057650
Date
2021
Journal
IEEE Transactions on Magnetics

Résumé

In this article, a novel five-phase fractional-slot concentrated winding (FSCW) with 20-slot/22-pole is presented. It benefits not only the advantages of conventional FSCW but also weak space harmonics of magnetomotive force (MMF). The winding allows eliminating the first sub-order harmonic. The new layout of the winding topology is obtained by a combination of stator shift technique of the winding in the slots with a special coupling of the windings (star-pentagon), using winding function theory. The high performances of the new winding layout are validated using the finite element method (FEM). Compared to the conventional winding, the winding factor and the total harmonic distortion (THD) of MMF are improved by 1.3% and 2.2%, respectively. With the same injection of current density, the average output torque is increased by 1% and the torque ripple is decreased by 60%. The eddy current losses in the permanent magnets (PMs) at rated speed (600 r/min) and 2100 r/min speed are improved by 67% and 56%, respectively.

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  • Laboratoire d'Electrotechnique et d'Electronique de Puissance (L2EP) de Lille

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Optimal Design of a Five-phase External Rotor Permanent Magnet Machine for Convey Application 
    Communication avec acte
    TAN, F.; GONG, J.; ZHAO, Q.; NGUYEN, Ngac Ky; ccSEMAIL, Eric; BRACIKOWSKI, N.; GILLON, F. (IEEE, 2022-09)
    This paper proposes the design and development of a five-phase external rotor permanent magnet synchronous machine (PMSM) which is used for direct drive convey application. Firstly, the slot/pole combination of fraction ...
  • Proposal of a Novel Topology of Five-Phase Fractional Slot Concentrated Non-Overlapping Winding with Selective MMF Harmonic Elimination 
    Communication avec acte
    GONG, J.; TAN, F.; ZHAO, B.; ccSEMAIL, Eric; NGUYEN, Ngac Ky; GILLON, F.; BRACIKOWSKI, N. (IEEE, 2022-10)
    In this paper, a novel topology of five-phase fractional-slot concentrated winding (FSCW) with selective magnetomotive force (MMF) harmonic elimination is proposed. Compared to traditional FSCW with stator shift technique, ...
  • Torque Optimization of a Seven-Phase Bi-harmonic PMSM in Healthy and Degraded Mode 
    Conférence invitée
    ZHANG, Hao; ZHAO, Benteng; GONG, Jinlin; XU, Yanliang; VU, Duc Tan; ccSEMAIL, Eric; DOS SANTOS MORAES, Tiago José; NGUYEN, Ngac Ky (IEEE, 2019)
    Compared to sinusoidal machines, a bi-harmonic machine (with only two harmonics of similar value in the electromotive force spectrum) can develop torque of comparable values under three kinds of supply: with only first or ...
  • Fault Tolerant 7-phase Hybrid Excitation Permanent Magnet Machine 
    Communication avec acte
    ZHAO, Benteng; GONG, Jinlin; VU, DUC TAN; ccSEMAIL, Eric; NGUYEN, Ngac Ky (IEEE, 2018)
    This paper presents a novel 7-phase hybrid excitation permanent magnet (HEPM) machine with three rotors around one stator. Two rotors with PMs axially magnetized and the third rotor with PMs radially magnetized. Thanks to ...
  • Quantitative Comparisons of Outer-Rotor Permanent Magnet Machines of Different Structures/Phases for In-Wheel Electrical Vehicle Application 
    Article dans une revue avec comité de lecture
    GONG, Jinlin; ZHAO, Benteng; HUANG, Youxi; ccSEMAIL, Eric; NGUYEN, Ngac Ky (MDPI AG, 2022-09)
    As one of the key components, low-speed direct-drive in-wheel machines with high compact volume and high torque density are important for the traction system of electric vehicles (EVs). This paper introduces four different ...

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