Design, Analysis and Application of Magnetless Doubly Salient Machines / Springer Theses (PDF)
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This thesis investigates the key characteristics of magnetless doubly salient machines, evaluates their design philosophies, and proposes new topologies for various applications. It discusses the background of and previous research on magnetless machines, while also outlining upcoming trends and potential future developments.
The thesis begins by presenting various torque-improving structures - namely the multi-tooth structure, the double-rotor (DR) structure, the axial-field (AF) structure, and the flux-reversal (FR) structure - for magnetless machines. It subsequently addresses the idea of merging the design philosophies of two different machines to form new dual-mode machines. Thanks to a reconfigured winding arrangement and controllable DC-field excitation, the proposed machines can further extend their operating range to meet the extreme demands of applications in electric vehicles and wind power generation. Lastly, the thesis employs the finite element method (FEM) to thoroughly analyze the proposed machines' key performance parameters and develops experimental setups to verify the proposed concepts.
Aug 2017¿present Guest Associate EditorIEEE Transaction on Energy Conversion Piscataway, NJ Title: Emerging Electric Machines and Drives for Smart Energy Conversion Promote the paper session to the specialists Invite reviewers to review the submitted papers Manage the logistic issues of the paper sessionJul 2017 Li Ka Shing Prize (The Best Ph.D. Thesis Award) The University of Hong Kong Hong Kong A highly competitive award to recognize the academic merits Awarded to the best Ph.D. graduate of the year Nominated as the outstanding theses for publishing in the Springer ThesesOct 2016¿Oct 2018 Croucher Fellowship for Postdoctoral Research
Croucher Foundation Hong Kong A prestigious award to support the brilliant researchers to pursue scientific research at
- Autor: Christopher H. T. LEE
- 2018, 1st ed. 2018, 199 Seiten, Englisch
- Verlag: Springer-Verlag GmbH
- ISBN-10: 9811070776
- ISBN-13: 9789811070778
- Erscheinungsdatum: 22.01.2018
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- Dateiformat: PDF
- Größe: 10 MB
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