Design of all-direction Misalignment tolerant magnetic interface suitable for Dynamic wireless power transfer systems

  • Alireza Jafari-Natanzi
  • , Sadegh Vaez-Zadeh
  • , Amir Babaki
  • , Sina Navaiyan-Kalat
  • , Jose Rodriguez

Publikation: Kapitel i bog/rapport/konference-proceedingKonferencebidrag i proceedingsForskningpeer review

Abstract

Wireless power transmission (WPT) systems can be a safe, efficient, and economical option in the long run for motor supplying in electric vehicles. The precise design of magnetic structures has a significant impact on the performance of such systems. In dynamic WPT (DWPT) systems, especially for wireless drive applications, due to the vehicle moving in four directions, the misalignment between the primary and secondary sides is considered as a limitation of this technology. In this paper, for a DWPT system with Double D magnetic pads for both sides, adding auxiliary windings in the secondary side, and introducing a suitable compensator in the primary side, a structure is proposed that tolerates the misalignment in all four directions.

OriginalsprogEngelsk
TitelIECON 2021 - 47th Annual Conference of the IEEE Industrial Electronics Society
ForlagIEEE Computer Society
Publikationsdatookt. 2021
Sider1-6
ISBN (Elektronisk)9781665435543
DOI
StatusUdgivet - okt. 2021
Udgivet eksterntJa
Begivenhed47th Annual Conference of the IEEE Industrial Electronics Society, IECON 2021 - Toronto, Canada
Varighed: 13. okt. 202116. okt. 2021

Konference

Konference47th Annual Conference of the IEEE Industrial Electronics Society, IECON 2021
Land/OmrådeCanada
ByToronto
Periode13/10/202116/10/2021
NavnProceedings of the Annual Conference of the IEEE Industrial Electronics Society
Vol/bind2021-October

Bibliografisk note

Funding Information:
ACKON WLEDMG ENT This work was supported by INSF through project 940013 and by ANID through projects FB0008, ACT192013, and 1210208.

Publisher Copyright:
© 2021 IEEE.

Finansiering

ACKON WLEDMG ENT This work was supported by INSF through project 940013 and by ANID through projects FB0008, ACT192013, and 1210208.

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