Coil Array Technique With Maximum Tolerance to 2-D Misalignment for Wireless Power Transfer Systems

被引:0
|
作者
Yoon, Seoyeon [1 ]
Lim, Taejun [2 ]
Lee, Yongshik [1 ]
机构
[1] Yonsei Univ, Dept Elect & Elect Engn, Seoul 120749, South Korea
[2] Samsung, Elect Mobile Div, Suwon 16877, South Korea
基金
新加坡国家研究基金会;
关键词
Varactors; Magnetic fields; Wireless power transfer; Transmitters; Switches; Shape; Mobile applications; Coil array; magnetic field; misalignment; transfer efficiency; wireless power transfer (WPT); zero coupling; EFFICIENCY; TRANSMITTER; AMPLIFIER; DESIGN;
D O I
10.1109/TMTT.2023.3330489
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this article, we present a coil array technique for wireless power transfer (WPT) systems that provides maximum tolerance to misalignment in any direction. Our approach integrates assistant coils, consisting of a 2 x 2 array of corner coils and a center coil, with the primary coil. By adjusting the varactors that load the assistant coils, optimum magnetic field is generated to maintain high efficiency regardless of misalignment. The corner coils steer the magnetic field to maintain the performance even with misalignment. Moreover, the center coil induces a virtual coil, which effectively compensates the degraded efficiency near the notorious transfer dead point where the net magnetic flux through the receiving coil becomes zero. Our experimental results, conducted at 6.78 MHz, demonstrate the efficacy of our approach. For a coil system with a vertical distance of 15 mm between Tx and Rx coils measuring 100 x 100 mm(2), we achieved an efficiency above 70% even at misalignments of up to 116% in the lateral direction and 103% in the diagonal direction, relative to the maximum coil dimension. Remarkably, our system maintains efficiency above 70.5% and 73.6% in the lateral and diagonal directions, respectively, even at 100% misalignment relative to the maximum coil dimension. Furthermore, our proposed system is asymmetrical, requiring assistant coils only on the transmitting (Tx) side. This greatly enhances practicality, particularly in mobile applications where coil volume expansion especially on the Rx side may not be feasible. Nevertheless, our system successfully overcomes the disadvantage of an asymmetric system and offers unparalleled tolerance to 2-D misalignment, regardless of the direction. Through this research, we provide a novel and more practical solution to enhance the performance of WPT systems in real-world conditions.
引用
收藏
页码:3819 / 3828
页数:10
相关论文
共 50 条
  • [21] A Switched Modular Multi-Coil Array Transmitter Pad With Coil Rectenna Sensors to Improve Lateral Misalignment Tolerance in Wireless Power Charging of Drone Systems
    Bharadwaj, Ananth
    Sharma, Ashwani
    Chandupatla, Chakradhar Reddy
    IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2023, 24 (02) : 2010 - 2023
  • [22] Large air gap misalignment tolerable multi-coil inductive power transfer for wireless sensors
    Kallel, Bilel
    Kanoun, Olfa
    Trabelsi, Hafedh
    IET POWER ELECTRONICS, 2016, 9 (08) : 1768 - 1774
  • [23] Anisotropic metamaterial for efficiency enhancement of mid-range wireless power transfer under coil misalignment
    Ranaweera, A. L. A. K.
    Moscoso, Carlos Arriola
    Lee, Jong-Wook
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2015, 48 (45)
  • [24] Misalignment Sensitivity of Strongly Coupled Wireless Power Transfer Systems
    Liu, Daerhan
    Hu, Hao
    Georgakopoulos, Stavros V.
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2017, 32 (07) : 5509 - 5519
  • [25] Design of A High Lateral Misalignment Tolerance Magnetic Coupler For Wireless Power Transfer Systems
    Yang, Guang
    Dong, Shuai
    Zhu, Chunbo
    Lu, Rengui
    Wei, Guo
    Song, Kai
    2017 IEEE PELS WORKSHOP ON EMERGING TECHNOLOGIES - WIRELESS POWER TRANSFER (WOW), 2017, : 34 - 39
  • [26] A novel hybrid coil design and implementation for wireless power transfer systems
    Pashaei, Ali
    Aydin, Emrullah
    Ozdemir, Mehmet Akif
    Kosesoy, Yusuf
    Aydemir, Mehmet Timur
    SCIENCE AND TECHNOLOGY FOR ENERGY TRANSITION, 2024, 79
  • [27] Misalignment Tolerable Coil Structure for Biomedical Applications with Wireless Power Transfer
    Chow, Jeff P. W.
    Chen, Nan
    Chung, Henry S. H.
    Chan, Leanne L. H.
    2013 35TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY (EMBC), 2013, : 775 - 778
  • [28] A High-Efficiency Wireless Power Transfer System With Variable Capacitor Technique for Compensating Coil Misalignment
    Lai, Ching-Ming
    Hsu, Ching-Hsuan
    Lin, Yi-Chen
    Chen, Meng-Zong
    Zheng, Ting-Zhong
    PROCEEDINGS OF 2024 IEEE WIRELESS POWER TECHNOLOGY CONFERENCE AND EXPO, WPTCE, 2024, : 688 - 692
  • [29] A New Coil Structure of Dual Transmitters and Dual Receivers With Integrated Decoupling Coils for Increasing Power Transfer and Misalignment Tolerance of Wireless EV Charging System
    Hossain, Amran
    Darvish, Peyman
    Mekhilef, Saad
    Tey, Kok Soon
    Tong, Chong Wen
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2022, 69 (08) : 7869 - 7878
  • [30] A Fractional-Order Wireless Power Transfer System With Misalignment and Detuning Tolerance
    Rong, Chao
    Zhang, Bo
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2023, 38 (12) : 14884 - 14895