An Efficient Soft-Switching Wireless Battery Charger With Low-Loss Auxiliary Circuit

被引:4
|
作者
Wang, Youzheng [1 ]
Liu, Hongchen [1 ]
Yu, Huiying [1 ]
Wheeler, Patrick [2 ]
Wu, Fengjiang [1 ]
机构
[1] Harbin Inst Technol, Sch Elect Engn & Automat, Harbin 150001, Peoples R China
[2] Univ Nottingham, Dept Elect & Elect Engn, Nottingham NG7 2RD, England
关键词
Switches; Transportation; Zero voltage switching; Zero current switching; Wireless communication; Voltage; Resonant frequency; Efficiency improvement; low-loss auxiliary circuit; soft-switching; wireless battery charger (WBC); zero-switching-loss inverter; INDUCTIVE-POWER-TRANSFER; CONSTANT-CURRENT; HYBRID; VOLTAGE; SYSTEM; COMPENSATION; TOPOLOGY; COUPLER;
D O I
10.1109/TTE.2023.3295794
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
Aiming at the problems that the soft-switching specialty is easily affected by the perturbation of compensation element parameters and the soft-switching range is restricted for the existing soft-switching wireless battery charger (SS-WBC), a novel SS-WBC with low-loss auxiliary circuit is proposed to solve the above problems. The proposed SS-WBC can achieve efficient charging within the entire charging process based on meeting the constant current (CC) and constant voltage (CV) charging requirements required for the battery. By adding a simple and low energy consumption auxiliary circuit, the switch tubes in the inverter can acquire true zero-voltage switching (ZVS) switch-on and true zero-current switching (ZCS) switch-off, which can effectively eliminate the switching loss in the inverter and soft-switching operation is not influenced by the perturbation of compensation element parameters. Moreover, a novel modulation strategy is used for the inverter. Only one switch in the inverter is in the high-frequency switching state in a cycle, which has a positive impact on improving efficiency. The working principle of the presented SS-WBC is depicted at length, and the soft-switching design rules within the entire charging process are discussed. Finally, a 300 W prototype with 95.1% peak efficiency is built to validate the proposed scenario.
引用
收藏
页码:3320 / 3333
页数:14
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