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A Novel Winding Connection Sequence of Dual Three-Phase Series-End Winding PMSM Drive for Speed Range Extension

Research output: Chapters, Conference Papers, Creative and Literary WorksRGC 32 - Refereed conference paper (with host publication)peer-review

Abstract

Series-end winding motor drives double the dc-link voltage utilization compared with the conventional star-connected winding counterparts, which indicates that series-end winding motor drives are suitable for high-speed applications with limited dc-link voltage. To further improve the dc-link voltage utilization and extend the speed range of the dual three-phase series-end winding permanent magnet synchronous motor (DTSW-PMSM) drive system, this paper develops a novel winding connection sequence (WCS) for DTSW-PMSM drive, and the dc-link voltage utilization is further improved by 36.6% compared with the normal WCS. The dc-link voltage utilizations of different WCSs are analyzed through the phasor relationship between the phase and leg voltages. In the experimental tests, the speed range of the DTSW-PMSM drive with the proposed WCS is extended significantly. Therefore, adopting the proposed WCS can be an effective means for further speed range extension of DTSW-PMSM drives without additional hardware. © 2023 IEEE.
Original languageEnglish
Title of host publication2023 IEEE International Magnetic Conference - Short Papers (INTERMAG Short Papers) - Proceedings
PublisherIEEE
ISBN (Electronic)979-8-3503-3836-2
ISBN (Print)979-8-3503-3837-9
DOIs
Publication statusPublished - 2023
Event2023 IEEE International Magnetic Conference (INTERMAG 2023) - Sendai, Japan
Duration: 15 May 202319 May 2023

Publication series

NameIEEE International Magnetic Conference - Short Papers, INTERMAG Short Papers - Proceedings

Conference

Conference2023 IEEE International Magnetic Conference (INTERMAG 2023)
PlaceJapan
CitySendai
Period15/05/2319/05/23

Funding

This work was supported in part by a grant (Project No. 52077186) from Natural Science Foundation of China (NSFC), China; in part by a grant (Project No. JCYJ20210324134005015) from the Science Technology and Innovation Committee of Shenzhen Municipality, Shenzhen, China; in part by a Collaborative Research Fund (CRF Project No. C1052-21GF) from the Research Grants Council, Hong Kong SAR; and in part by RGC Research Fellow Scheme (RGC Ref. No.: RFS2223-1S05) from Research Grants Council, Hong Kong SAR. (*Corresponding author: Chunhua Liu)

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Research Keywords

  • Dual three-phase motor drives
  • permanent magnet synchronous motor
  • speed range
  • winding connection sequence

RGC Funding Information

  • RGC-funded

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