Misalignment Tolerance Improvement of a Wireless Power Supply System for Drones Based on Transmitter Design with Multiple Annular-Sector-Shaped Coils

被引:0
|
作者
Liu, Han [1 ]
Huang, Dengjie [1 ]
Wang, Lin [1 ]
Wang, Rong [2 ]
机构
[1] Hohai Univ, Sch Elect & Power Engn, Nanjing 210024, Peoples R China
[2] Extrahigh Voltage Branch, State Grid Jiangsu Elect Power Co Ltd, Nanjing 211102, Peoples R China
基金
中国国家自然科学基金;
关键词
drones; power replenishment; wireless power transfer; energy coupler; CONFIGURATION; RECEIVERS;
D O I
10.3390/drones8120773
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
The application of wireless power transfer (WPT) technology in power replenishment for drones can help to solve problems such as the frequent manual plugging and unplugging of cables. A wireless power replenishment system for drones based on the transmitter design with multiple annular-sector-shaped coils is proposed in this paper, which improves the misalignment tolerance of couplers, enlarges the drone landing area, and reduces the control requirements of drone landing accuracy further. The general analysis model of the proposed transmitter and the numerical calculation method for mutual inductance between energy transceivers are established. Then, the effect of multiple parameters of the proposed transmitter on the variation in mutual inductance is studied. The misalignment tolerance improvement strategy based on the optimization of multiple parameters of the transmitter is investigated. Finally, an experimental prototype of a wireless power replenishment system for drones based on LCC-S compensation topology is designed to validate the theoretical research. Under the same maximum outer radius of 0.20 m and the same mutual inductance fluctuation rate of 5%, compared to single circular transmitter mode, the maximum offset distance of all directions (360 degrees) in the x-y plane is increased from 0.08 m to 0.12 m. As the receiving side position changes, the maximum receiving power and efficiency are 141.07 W and 93.79%, respectively. At the maximum offset position of 0.12 m, the received power and efficiency are still 132.13 W and 91.25%, respectively.
引用
收藏
页数:23
相关论文
共 47 条
  • [21] Triangulated Transmitter Coils With High Design Freedom for Free-Positioning and Omnidirectional Wireless Power Transfer System
    Li, Yi
    Feng, Yuan
    Guo, Yongxin
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2025, 40 (01) : 2619 - 2629
  • [22] Design of the long-distance wireless power transfer system with multiple relay coils based on loss optimization
    Wu, Zhijun
    Tan, Linlin
    Xu, Heqi
    Shen, Shuyu
    Huang, Xueliang
    ELECTRICAL ENGINEERING, 2024, 106 (03) : 3337 - 3348
  • [23] A Single-Transmitter Multi-Receiver Wireless Power Transfer System with High Coil Misalignment Tolerance and Variable Power Allocation Ratios
    Luo, Yanting
    Dai, Zhuoyue
    Yang, Yongmin
    ELECTRONICS, 2024, 13 (19)
  • [24] The Design and Fabrication of Multiple-Transmitter Coils and Single-Receiver Coils for a Wireless Power Transfer System to Charge a 3s LiPo Drone's Battery
    MohamedZain, Ahmed O.
    Hou, Lee Wei
    Chua, Huangshen
    Yap, Kianmeng
    Boon, Lau Kim
    ENERGIES, 2023, 16 (09)
  • [25] Analysis and Design of a 6.78 M Wireless Power Transfer System With Strong Misalignment Tolerance Based on Simplified Impedance Trajectory Tracing
    Sun, Zhan
    Hu, Guangliang
    Li, Gang
    Wang, Yijie
    Guan, Yueshi
    Xu, Dianguo
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2024, 71 (10) : 13470 - 13475
  • [26] Field Control Method for Coupling Efficiency Improvement of Two-dimensional Dynamic Wireless Charging System with Multiple Transmitter Coils
    Hong, Yunshan
    Wang, Junhua
    Cai, Changsong
    Liu, Qisheng
    Luo, Yang
    Wan, Leke
    TWENTIETH BIENNIAL IEEE CONFERENCE ON ELECTROMAGNETIC FIELD COMPUTATION (IEEE CEFC 2022), 2022,
  • [27] Multiple Parameters Estimation Based on Transmitter Side Information in Wireless Power Transfer System
    Xiao, Wenxun
    Shen, Ruigeng
    Zhang, Bo
    Qiu, Dongyuan
    Chen, Yanfeng
    Xie, Fan
    IEEE ACCESS, 2019, 7 : 164835 - 164843
  • [28] A Wireless Power Transfer System With High Misalignment Tolerance Based on Dual Side Variable Inductor Control
    Yenil, Veli
    IEEE ACCESS, 2024, 12 : 134937 - 134947
  • [29] Design of a High Power, LCC-Compensated, Dynamic, Wireless Electric Vehicle Charging System with Improved Misalignment Tolerance
    ElGhanam, Eiman
    Hassan, Mohamed
    Osman, Ahmed
    ENERGIES, 2021, 14 (04)
  • [30] Wireless Power Transfer System with High Misalignment Tolerance Based on Bipolar Coupling Magnetic-Field Control
    Xie S.
    Yang Y.
    Li L.
    Zhang L.
    Zhang X.
    Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2023, 38 (18): : 4838 - 4851