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Performance Comparison of Primary Side PFM and Secondary Side PWM for SS Wireless Power Transfer CC/CV Control Strategy

机译:SS无线电源传输CC / CV控制策略的初级侧PFM和次级侧PWM的性能比较

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Wireless Power Transfer (WPT) system for Electric Vehicle (EV) battery charging application popularity is increasing due to the safety, convenience, and eco-friendly issue. Nowadays, Lithium-Ion battery is well known as one of the potential options for EV. However, Constant Current/Constant Voltage (CC/CV) control strategy needs to be adopted for achieving high efficiency charging and maintaining battery lifetime. By analyzing the gain curve, Pulse Frequency Modulation (PFM) can be used to perform CC/CV charging due to the load variation. The operating switching frequency needs to be considered and limited to prevent instability of the system. A typical drawback in the PFM control is the use of serial communication module for feedback data transmission from the secondary to the primary side. Therefore, the rectifier side controlled WPT can be a solution to remove the feedback communication part. In this paper, Pulse Width Modulation (PWM) applied in the secondary side (rectifier) for achieving CC/CV charging is investigated and compared with the traditional PFM control. The comparison study is verified by implementing a 3kW Series-Series (SS) WPT topology in the Power Simulation (PSIM) software. It shows that the secondary side PWM control strategy can achieve 94% efficiency during the 35 Ω load in CC mode, while the primary side PFM control only can achieve 88% efficiency.
机译:由于安全性,便利性和环保问题,用于电动汽车(EV)电池充电应用的无线功率传输(WPT)系统越来越受欢迎。如今,锂离子电池已成为电动汽车的潜在选择之一。但是,需要采用恒流/恒压(CC / CV)控制策略来实现高效充电和维持电池寿命。通过分析增益曲线,由于负载变化,可以使用脉冲频率调制(PFM)进行CC / CV充电。需要考虑并限制工作开关频率,以防止系统不稳定。 PFM控制中的典型缺陷是使用串行通信模块进行从次级侧到初级侧的反馈数据传输。因此,整流器侧控制的WPT可以作为删除反馈通信部分的解决方案。本文研究了在次级侧(整流器)中用于实现CC / CV充电的脉冲宽度调制(PWM),并将其与传统的PFM控制进行了比较。通过在Power Simulation(PSIM)软件中实施3kW串联系列(SS)WPT拓扑来验证比较研究。结果表明,在CC模式下35Ω负载期间,次级侧PWM控制策略可以达到94%的效率,而初级侧PFM控制只能达到88%的效率。

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