基于半有源整流器的电动汽车单级无线充电系统

Xiaoqiang Wang, Xin Zhang, Yongmao Wang, Hao Ma, Jie Tian, Rui Li
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引用次数: 0

摘要

为了对锂离子电池进行高效、安全的充电,提出了一种基于半有源整流器(SAR)和接收侧开关控制电容器(SCC)的单级无线充电系统。SAR用于实现恒流(CC)-恒功率(CP)-恒压(CV)充电,SCC用于补偿SAR引起的电抗,使WBCS保持调谐状态。为了同时实现CC-CP-CV充电和动态调谐,引入了实时阻抗计算(RIC)方法。由于控制策略基于固定开关频率和接收端调节,不需要无线反馈通信,提高了系统可靠性。建立了900W原型机来验证所提出的WBCS的有效性。实验结果表明,WBCS在整个充电过程中具有良好的性能和效率提升。
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Semi-Active Rectifier Based Single-Stage Wireless Battery Charging System with Dynamic Tuning Capability for Electric Vehicles
In order to charge the Li-ion battery efficiently and safely, a novel single-stage wireless battery charging system (WBCS) based on the semi-active rectifier (SAR) and the switch-controlled capacitor (SCC) in receiver side are proposed in this paper. SAR is used for implementing constant current (CC)-constant power (CP)-constant voltage (CV) charging profile and SCC is used to compensate the reactance caused by SAR so that the WBCS can maintain the tuning condition. To realize the CC-CP-CV charging and dynamic tuning simultaneously, real-time impedance calculation (RIC) method is introduced. Since the control strategies are based on fixed switching frequency and receiver-side regulation, wireless feedback communication is not required, leading to improved system reliability. A 900W prototype is built to verify the validity of the proposed WBCS. The experiment results show good performance and efficiency improvement for the WBCS in the whole charge process.
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