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A 13.56-MHz Full-Bridge Class-D ZVS Inverter With Dynamic Dead-Time Control for Wireless Power Transfer Systems

机译:具有动态死区控制的13.56MHz全桥D类ZVS逆变器,用于无线功率传输系统

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摘要

This paper presents the development of a Class-D full-bridge zero-voltage switching (ZVS) inverter, applicable to wireless power transfer (WPT) systems, operating at 13.56 MHz switching frequency with dynamic dead-time control (DDTC). Resonant-coupled WPT systems are being designed at ultrahigh switching frequencies to reduce the size of the wireless link and the passive components. Maintaining ZVS while controlling the output power delivered to a fixed or variable load is one of the major challenges of designing inverters at multi-MHz switching frequencies. DDTC is the approach deployed in this paper to sustain soft switching of a Class-D full-bridge inverter over the full range of output power while regulating the input dc bus voltage. Simulation results are presented to show that dynamically controlling the dead-time during input dc bus voltage variations reduces switch-node voltage overshoot, prevents large current spikes in the switching devices, and reduces associated high switching loss. Practical results obtained show that DDTC reduces switch-node voltage overshoot, increases the inverter efficiency, and reduces the steady-state temperature of the inverter during output power regulation.
机译:本文介绍了D类全桥零电压开关(ZVS)逆变器的开发,该逆变器适用于以动态死区控制(DDTC)在13.56 MHz开关频率下工作的无线功率传输(WPT)系统。谐振耦合WPT系统的设计采用超高开关频率,以减小无线链路和无源组件的尺寸。在控制以固定或可变负载输出的输出功率的同时保持ZVS是在多MHz开关频率下设计逆变器的主要挑战之一。 DDTC是本文采用的方法,可在输出功率的整个范围内维持D类全桥逆变器的软开关,同时调节输入直流总线电压。仿真结果表明,在输入直流总线电压变化期间动态控制空载时间可减少开关节点电压过冲,防止开关器件中出现大电流尖峰,并减少相关的高开关损耗。获得的实际结果表明,DDTC减少了开关节点电压过冲,提高了逆变器效率,并降低了输出功率调节期间逆变器的稳态温度。

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