微特电机 ›› 2023, Vol. 51 ›› Issue (9): 51-58.

• 驱动控制 • 上一篇    下一篇

基于 LCL 补偿的双频双负载无线电能传输系统

夏锦涛,沈艳霞   

  1. 江南大学 物联网技术应用教育部工程研究中心,无锡 214122
  • 收稿日期:2023-03-16 出版日期:2023-09-28 发布日期:2023-09-16
  • 基金资助:
    国家重点研发计划( 2020YFB1711102)

Multi-Frequency Multi-Load Wireless Transmission System Based on LCL Compensation

XIA Jintao, SHEN Yanxia   

  1. Internet of Things Technology Application,Engineering Center of Ministry of Education Research,Jiangnan University,Wuxi 214122,China
  • Received:2023-03-16 Online:2023-09-28 Published:2023-09-16

摘要: 为实现多负载磁耦合谐振无线功率传输( MCR-WPT) 系统各负载间的功率调节,提出一种双频双负载MCR-WPT 系统。 输入端采用多频多幅信号叠加调制方法,多个频率信号共享一个公共逆变器以及直流电压源,发射端采用 LCL 补偿网络提供不同谐振频率的传输通道,各接收机谐振频率与输入信号频率一一对应,从而实现不同负载间功率的分配调节。 建立具有不同谐振频率的双负载 MCR-WPT 系统的数学模型,分析系统输入阻抗特性,采用粒子群算法实现系统参数的优化设计方法,使系统工作在零电流开关状态下以减少开关管开关损耗。 在搭建的实验样机上对该系统进行了实验验证。

关键词: 无线电能传输, 磁耦合谐振, 多频多负载, 粒子群算法

Abstract: A dual-frequency multi-load magnetically coupled resonant wireless power transmission ( MCR-WPT ) system was proposed to realize the power regulation among the loads of the multi-load MCR-WPT system. The input side adopted multiple frequency multiple amplitude signal superposition modulation method, and the multiple frequency signals shared a common inverter and DC voltage source, and the transmitter side adopted LCL compensation network to provide transmission channels with different resonant frequencies, and the resonant frequencies of each receiver corresponded to the frequencies of the input signals. A mathematical model of the dual-load MCR-WPT system with different resonant frequencies was established, the input impedance characteristics of the system were analyzed, and the particle swarm optimization was used to realize the optimal design method of the system parameters. The system was experimentally verified on an experimental prototype built.

Key words: wireless power transmission( WPT), magnetically coupled resonance( MCR), multi-frequency and multiload, particle swarm optimization( PSO)

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