基于原边检测的MCR-WPT系统参数辨识方法
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国家重点研发计划基金资助项目(2022YFB3403200)


Parameter Identification Method for MCR-WPT Systems Based on Primary Side Detection
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    摘要:

    针对磁耦合无线电能传输系统负载与互感辨识方法复杂且辨识精度较低的问题,提出了一种MCR-WPT系统的负载与互感同时辨识方法。首先,在考虑系统高次谐波的影响下,建立LCC-S拓扑系统稳态电路模型并进行验证,得到原边逆变器输出电流与互感、负载的数学描述;其次,引入改进粒子群算法,以原边逆变器输出电流理论值与实际值之间的误差构建适应度函数,将系统的参数辨识问题转化为寻优问题,从而得到系统负载以及互感的辨识值;最后,仿真结果表明,所提方法辨识的负载与互感值误差均不超过1.20%,非常接近实际值,验证了所提方法的正确性。该方法可被应用于谐振和非谐振MCR-WPT系统,且不受补偿网络的限制,无需原副边通信、辅助电路即可精确辨识负载和互感参数。

    Abstract:

    In view of the complex and low identification accuracy of load and mutual inductance identification methods in magnetically coupled wireless power transfer (MCR-WPT) systems, a method has been proposed for simultaneous identification of load and mutual inductance in MCR-WPT systems. Firstly, with the influence of high-order harmonics in the system taken into consideration, a steady-state circuit model of the LCC-S topology system is established and verified, thus obtaining mathematical descriptions of the output current, mutual inductance, and load of the primary inverter. Secondly, an improved particle swarm optimization algorithm is introduced so as to construct a fitness function based on the error between the theoretical and actual values of the output current of the primary inverter, with the parameter identification of the system transformed into an issue of optimization, thereby obtaining the identification values of the system load and mutual inductance. Finally, the simulation results show that the load and mutual inductance errors identified by the proposed method are kept below 1.20%, which is very close to the actual values, verifying the feasibility of the proposed method. This proposed approach is applicable to both resonant and non-resonant MCR-WPT systems without compensation network constraints, thus enabling precise parameter identification without primary-secondary communication or auxiliary circuits.

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舒中宾,黎伟杰,李中启.基于原边检测的MCR-WPT系统参数辨识方法[J].湖南工业大学学报,2026,40(3):33-40.

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  • 在线发布日期: 2026-03-27
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