TY - JOUR
T1 - A Misalignment-Tolerant WPT System for UAVs Based on a Fully Planar Uniform Rotating Magnetic Field
AU - Liang, Chenxu
AU - Zhu, Zhenghao
AU - Yuan, Huan
AU - Chu, Jifeng
AU - Yang, Aijun
AU - Li, Anglin
AU - Hu, Aiguo Patrick
AU - Rong, Mingzhe
AU - Wang, Xiaohua
N1 - Publisher Copyright:
© 1982-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - The inability of uncrewed aerial vehicles (UAVs) to land accurately within designated charging areas significantly restricts their wireless power transfer (WPT) applications. To address this challenge, this article proposes a full-plane misalignment-tolerant WPT system based on a self-decoupled flat orthogonal coil pair. The proposed system generates a uniformly distributed horizontal magnetic flux that rotates at a constant angular velocity. At any position and orientation above the transmitter platform, the receiver coil can capture an alternating magnetic flux with a consistent amplitude. This enables the system to achieve full-plane misalignment tolerance, including lateral, longitudinal, and rotational offsets. This article innovatively employs a corrected image current method and genetic algorithms to optimize the coil distribution of the flat orthogonal coils, generating a highly uniform horizontal magnetic flux above the transmitting platform. With phase-shifted currents, a uniformly rotating magnetic flux at the resonant frequency is achieved. The output remains highly stable and unaffected by the UAV’s position or orientation above the platform, without requiring position sensing, frequency adjustment, or other complex control strategies. Experimental results demonstrate that the system exhibits excellent misalignment tolerance, delivering approximately 200 W of output power with a DC–DC efficiency of 88%. The output voltage varies by no more than ±2.5% under ±30 mm longitudinal/lateral misalignments and by only ±3% across a full 360° rotation.
AB - The inability of uncrewed aerial vehicles (UAVs) to land accurately within designated charging areas significantly restricts their wireless power transfer (WPT) applications. To address this challenge, this article proposes a full-plane misalignment-tolerant WPT system based on a self-decoupled flat orthogonal coil pair. The proposed system generates a uniformly distributed horizontal magnetic flux that rotates at a constant angular velocity. At any position and orientation above the transmitter platform, the receiver coil can capture an alternating magnetic flux with a consistent amplitude. This enables the system to achieve full-plane misalignment tolerance, including lateral, longitudinal, and rotational offsets. This article innovatively employs a corrected image current method and genetic algorithms to optimize the coil distribution of the flat orthogonal coils, generating a highly uniform horizontal magnetic flux above the transmitting platform. With phase-shifted currents, a uniformly rotating magnetic flux at the resonant frequency is achieved. The output remains highly stable and unaffected by the UAV’s position or orientation above the platform, without requiring position sensing, frequency adjustment, or other complex control strategies. Experimental results demonstrate that the system exhibits excellent misalignment tolerance, delivering approximately 200 W of output power with a DC–DC efficiency of 88%. The output voltage varies by no more than ±2.5% under ±30 mm longitudinal/lateral misalignments and by only ±3% across a full 360° rotation.
KW - Misalignment tolerance
KW - uncrewed aerial vehicle (UAVs)
KW - wireless power transfer (WPT)
UR - https://www.scopus.com/pages/publications/105040209808
U2 - 10.1109/TIE.2026.3690861
DO - 10.1109/TIE.2026.3690861
M3 - 文章
AN - SCOPUS:105040209808
SN - 0278-0046
JO - IEEE Transactions on Industrial Electronics
JF - IEEE Transactions on Industrial Electronics
ER -