TY - JOUR
T1 - A Strong Misalignment Tolerance and Low Stray Magnetic Fields Wireless Power Transfer System for Planar Type AUV with Hybrid Magnetic Coupler
AU - Wen, Haibing
AU - Zhou, Xiaolong
AU - Guo, Min
AU - Wen, Jie
AU - Zhang, Kehan
AU - Yan, Zhengchao
AU - Yang, Lei
AU - Zhao, Yaopeng
AU - Tong, Xiangqian
AU - Song, Baowei
N1 - Publisher Copyright:
© 1986-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - The influence of multi-dimensional misalignments on the output characteristics and stray magnetic fields interference present critical challenges to the wireless power transfer (WPT) systems for planar-type underwater vehicles. To address the aforementioned issues, this article proposes a dual-channel magnetic coupling mechanism. The newly developed stepped bipolar four-coil (SBF) transmitter structure, integrated by bipolar four-coil units and stepped coils, effectively suppresses the stray magnetic fields while simultaneously generating a uniform magnetic field distribution. Furthermore, a rectangular cross-shaped solenoid pad (RCSP) receiver featuring a structural compatibility is put forward. The complement effect of rectangular and cross-shaped solenoid coils is employed to ensure the pick-up of both vertical and horizontal magnetic flux, thus, a nearly constant mutual inductance between the proposed SBF-RCSP magnetic coupler is achieved. A 500W experimental prototype is constructed to validate the proposed WPT system. Within a lateral misalignment range of 100 mm, full 360° rotational offset, and 15° tilt angle, the output power fluctuation does not exceed 9.06%, and the transmission efficiency variation remains within 0.88%. Stray magnetic field in the evaluation region is reduced by 72.83% compared with that of a rectangular coil with the same self-inductance.
AB - The influence of multi-dimensional misalignments on the output characteristics and stray magnetic fields interference present critical challenges to the wireless power transfer (WPT) systems for planar-type underwater vehicles. To address the aforementioned issues, this article proposes a dual-channel magnetic coupling mechanism. The newly developed stepped bipolar four-coil (SBF) transmitter structure, integrated by bipolar four-coil units and stepped coils, effectively suppresses the stray magnetic fields while simultaneously generating a uniform magnetic field distribution. Furthermore, a rectangular cross-shaped solenoid pad (RCSP) receiver featuring a structural compatibility is put forward. The complement effect of rectangular and cross-shaped solenoid coils is employed to ensure the pick-up of both vertical and horizontal magnetic flux, thus, a nearly constant mutual inductance between the proposed SBF-RCSP magnetic coupler is achieved. A 500W experimental prototype is constructed to validate the proposed WPT system. Within a lateral misalignment range of 100 mm, full 360° rotational offset, and 15° tilt angle, the output power fluctuation does not exceed 9.06%, and the transmission efficiency variation remains within 0.88%. Stray magnetic field in the evaluation region is reduced by 72.83% compared with that of a rectangular coil with the same self-inductance.
KW - low stray magnetic fields
KW - misalignment tolerance
KW - planar-type underwater vehicles
KW - wireless power transfer (WPT)
UR - https://www.scopus.com/pages/publications/105039164471
U2 - 10.1109/TPEL.2026.3692497
DO - 10.1109/TPEL.2026.3692497
M3 - 文章
AN - SCOPUS:105039164471
SN - 0885-8993
JO - IEEE Transactions on Power Electronics
JF - IEEE Transactions on Power Electronics
ER -