Comparative Analysis of Wireless Charging Systems
DOI:
https://doi.org/10.61173/a7p04q88Keywords:
wireless charging transmission, smart grid, comparative analysis, electromagnetic induction, applica-ble scenariosAbstract
With the accelerated progress of global modernization, electric energy, as one of the most important basic energy sources in human society, has deeply penetrated all areas of production and life. From industrial production to smart homes, from transportation to information communication, the stable supply and efficient transmission of electric energy are always the key elements to support the operation of modern society. In this context, although the traditional wire transmission method is technologically mature, its inherent limitations such as complex wiring, high maintenance costs, safety hazards, and other issues are becoming increasingly prominent, especially in special environments (e.g., the ocean, high altitude, mobile equipment, etc.) in the application of serious constraints. As a breakthrough energy transmission method, wireless energy transmission technology is gradually becoming a research hotspot in the field of energy transmission by virtue of its non-contact, flexible, convenient, safe, and reliable advantages. This paper summarizes the comparative analysis of various wireless transmission methods. Firstly, it introduces the development history and basic principles of different wireless transmission methods. Secondly, it compares the performance of different wireless transmission methods, their construction costs, and transmission efficiency, and finally discusses the application scenarios of different wireless transmission methods, and analyzes the advantages and disadvantages, so that they can be better applied in different fields and reduce the resource application of the mismatch.
References
[1] JIA Wenhui, FAN Zhanqiang. Analysis of factors affecting the operation safety of power transmission lines and prevention and control measures[J]. Technology and Market,2018,25(06):179.
[2] WANG Wei. Research on key technology of wireless energy supply for online monitoring equipment of high-voltage transmission lines and system optimization design [D]. Southeast University,2017.
[3] Xiao Yangyun. Research on self-resonant multi-relay radio energy transmission systems for composite insulators[D]. Heilongjiang: Harbin Institute of Technology,2022.
[4] LI Siqi, Dai Weiju, Zhao Han, et al. Development and application of electric field coupled wireless energy transmission[J]. Journal of Kunming University of Science and Technology (Natural Science Edition),2016,41(03):76-84.
[5] LI Jianpo, LI Shuo, WANG Yijun, et al. A review of research on magnetic coupling resonant wireless energy transmission technology[J]. Electrical Measurement and Instrumentati on,2024,61(08):1-11.
[6] Fang Wu. Optimization study of transmission efficiency of magnetically coupled resonant wireless energy transmission Dean&Francis Dingxi Zhang system[D]. Anhui University of Technology,2022.
[7] SUN Yue, XIA Chenyang, DAI Xin, et al. Analysis and optimization of mutual inductive coupling parameters in inductively coupled power transmission systems[J]. Chinese Journal of Electrical Engineering,2010,30(33):44-50.
[8] LAI Yuzhou. Design and realization of cell phone wireless charger based on electromagnetic induction technology[D]. Sichuan: Chengdu University of Technology,2016.
[9] CAO Zhengfei. Simulation study of wireless charging system for grid inspection robot based on improved LCL-S [D]. Gansu: Lanzhou University of Technology,2019.
[10] JIA Er-Torch. Magnetically coupled resonant WPT technology and its application in wireless charging of electric vehicles [D]. Guilin University of Electronic Science and Technology,2017.
[11] WANG Wei. Research on key technology of wireless energy supply for online monitoring equipment of high-voltage transmission lines and system optimization design [D]. Jiangsu: Southeast University,2017.
[12] Li YM. Research on synchronous transmission technology of underwater wireless energy and information based on magnetic induction coupling [D]. Hangzhou University of Electronic Science and Technology,2023.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 by the authors.

This work is licensed under a Creative Commons Attribution 4.0 International License.
