College of Electronic and Electrical Engineering, Henan Normal University, Xinxiang 453007, China.
Henan Key Laboratory of Optoelectronic Sensing Integrated Application, Henan Normal University, Xinxiang 453007, China.
Sensors (Basel). 2023 Jan 11;23(2):838. doi: 10.3390/s23020838.
Wireless power transfer (WPT) has been extensively studied by technicians for its advantages of safety, convenience and aesthetics. The load-independent constant current (CC) output is the focus of WPT research and has been initially applied in various fields, such as light-emitting diodes (LEDs) driving, CC charging of electric vehicles (EVs), etc. However, the existing CC-type WPT system has problems in that the output current is constrained by the loosely coupled transformer (LCT) parameters, the receiver is bulky, and the development cost is high. Therefore, this manuscript proposes a new CLC/None (CLC/N) compensated WPT system with a CC output function that eliminates the receiver-side compensation components, ensures the compactness of the receiver, and saves on production costs. The conditions for satisfying the CC output and zero-phase-angle (ZPA) operation of the proposed system are first discussed. Then, the detailed parameter design method is provided, and the characteristic that the output current is unconstrained by the LCT parameters is illustrated. In addition, the implementation of zero-voltage switching (ZVS) operation of the proposed system and the sensitivity of the changes of compensation components to the output current are analyzed in detail. Furthermore, to demonstrate the superiority of the proposed system, several other typical CC-type WPT systems are introduced for comparison. Finally, a confirmatory experimental prototype with an output current of 2 A is fabricated, and the experimental results are consistent with the theoretical analysis.
无线电能传输 (WPT) 因其安全、方便和美观的优点而受到技术人员的广泛研究。负载独立恒流 (CC) 输出是 WPT 研究的重点,并已初步应用于各种领域,如发光二极管 (LED) 驱动、电动汽车 (EV) CC 充电等。然而,现有的 CC 型 WPT 系统存在输出电流受松耦合变压器 (LCT) 参数限制、接收器体积大、开发成本高等问题。因此,本文提出了一种具有 CC 输出功能的新型 CLC/None (CLC/N) 补偿 WPT 系统,该系统消除了接收器侧补偿元件,确保了接收器的紧凑性,并降低了生产成本。首先讨论了满足所提出系统 CC 输出和零相角 (ZPA) 操作的条件。然后,提供了详细的参数设计方法,并说明了输出电流不受 LCT 参数限制的特性。此外,详细分析了所提出系统的零电压开关 (ZVS) 操作的实现以及补偿元件对输出电流变化的敏感性。此外,为了证明所提出系统的优越性,还介绍了几个其他典型的 CC 型 WPT 系统进行比较。最后,制作了一个输出电流为 2A 的确认实验原型,实验结果与理论分析一致。