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磁耦合无线电能传输技术工作机制综述及分析OA

Review and Analysis of the Operation Mechanisms of Magnetic Coupling Wireless Power Transfer Technology

中文摘要英文摘要

磁耦合无线电能传输技术为深空、深海、深地等无人环境下电气设备安全可靠供电提供有效解决方案.随着技术的发展,各种新颖工作机制,如宇称时间对称机制、复本征态机制等被相继提出,但各机制的原理差异目前认识并不全面.鉴于此,该文首先对比分析电路学科中的特征值与量子等学科中的本征值的关系,证实量子等学科中的实本征态工作机制就是电路学科中自激振荡机制.进而,对目前已有的工作机制的物理原理、参数准则、实现方式及对应的能效特性进行详细的对比分析,为实际系统工作机制选取提供理论准则.在此基础上,总结宇称时间对称无线电能传输系统目前取得的研究进展,并进一步探讨现存待解决的关键科学技术问题与发展趋势.

Magnetic Coupling Wireless Power Transfer provides an effective solution for the safe and reliable power supply of electrical equipment in unmanned environments such as deep space,deep sea and deep earth.With the development of the technology,various novel operation mechanisms,such as the parity-time symmetry mechanism and the complex eigenstate mechanism,have been proposed,but the differences in the principles of each mechanism are not fully recognized at present.In view of this,this paper firstly compares and analyzes the relationship between the characteristic values in the circuit discipline and the eigenvalues in the quantum and other disciplines,and confirms that the real eigenstate operation mechanism in the quantum and other disciplines is the self-excited oscillation mechanism in the circuit discipline.Then the physical principles,parameter criteria,realization methods and corresponding energy efficiency characteristics of the existing operation mechanisms are analyzed in detail,providing theoretical guidelines for the selection of the operation mechanism of the actual system.On this basis,we summarize the current research progress of the parity-time symmetry wireless power transfer system,and further discuss the existing key scientific and technological problems to be solved and the development trend.

廖志娟;郭广森;夏晨阳;孙跃

中国矿业大学电气工程学院,江苏省 徐州市 221116中国矿业大学电气工程学院,江苏省 徐州市 221116中国矿业大学电气工程学院,江苏省 徐州市 221116重庆大学自动化学院,重庆市 沙坪坝区 400044

信息技术与安全科学

无线电能传输磁耦合宇称时间对称工作机制分析

wireless power transfermagnetic couplingparity-time symmetryanalysis of operation mechanisms

《中国电机工程学报》 2026 (16)

6040-6061,中插28,23

国家自然科学基金(面上基金项目)(52377019). Project Supported by National Natural Science Foundation of China(General Program)(52377019).

10.13334/j.0258-8013.pcsee.250763

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