Issi Fatih, Kaplan Orhan
Electronics and Automation Dept., Cankiri Karatekin University, Turkey.
Technology Faculty, Electrical and Electronics Engineering Dept., Gazi University, Turkey.
ISA Trans. 2022 Jul;126:415-427. doi: 10.1016/j.isatra.2021.07.050. Epub 2021 Aug 6.
Class-E inverter, which is assumed as an ideal exciter for wireless power transfer system due to their low power losses and suitability for high-frequency operation, can operate under the proper switching conditions when the distance between the transmitter and the receiver and the load is constant. The change in the distance between the coils or the load value removes the optimum switching conditions and causes high switching losses. This paper describes all design procedures and the inductive coupling wireless power transfer system based on a Class-E inverter used as a coil driver. In case the distance between the coils changes, the optimum switching condition of the Class-E inverter and the impedance matching between the transmitter and receiver have been dynamically sustained with an adaptive capacity array on the transmitter side. The best combination of the array involving a serial/parallel capacitor network is configured using a novel searching algorithm for different coil distances. In addition, this study investigates both coupling efficiency and the efficiency of Class-E inverter that is remarked by a few studies in the existing literature. The developed simulation studies and the laboratory prototype with power of 1 kW demonstrate the providing of the zero voltage-switching requirement for Class-E inverter and the impedance matching of the wireless power transfer system in case of variable coupling coefficient. Therefore, the efficiency of power transfer achieved as 91.13% for the implementation circuit.
E类逆变器由于其低功率损耗和适用于高频运行,被认为是无线电力传输系统的理想激励器。当发射器与接收器及负载之间的距离恒定时,E类逆变器可在适当的开关条件下运行。线圈之间距离或负载值的变化会消除最佳开关条件,并导致高开关损耗。本文描述了基于用作线圈驱动器的E类逆变器的所有设计过程及感应耦合无线电力传输系统。在线圈之间距离发生变化的情况下,通过发射器侧的自适应电容阵列动态维持E类逆变器的最佳开关条件以及发射器与接收器之间的阻抗匹配。使用一种新颖的搜索算法针对不同的线圈距离配置包含串联/并联电容网络的阵列的最佳组合。此外,本研究还考察了耦合效率以及E类逆变器的效率,现有文献中对此有少量研究。所开展的仿真研究以及功率为1kW的实验室原型证明了在可变耦合系数情况下E类逆变器零电压开关要求的实现以及无线电力传输系统的阻抗匹配。因此,该实现电路的功率传输效率达到了91.13%。