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Self-Oscillating Tuning Loops for Series Resonant Inductive Power Transfer Systems

机译:用于串联谐振感应功率传输系统的自激调谐环

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摘要

This paper presents power and frequency tuning loops based on fundamental harmonic operation (FHO) and third harmonic operation (THO) for inductive power transfer (IPT) systems. THO is an effective solution for applications requiring high-frequency power supply with low voltage gains, e.g., low-voltage contactless battery chargers. Moreover, it can reduce the switching losses and increase the net efficiency of IPT systems in light-load conditions. Compared to conventional methods, such as phase-locked-loop (PLL) circuits, the proposed methods are less affected by misalignments and instantly track the resonant frequency. Hence, they can be utilized in self-switched capacitor and variable coupling applications. In addition, the new tuning systems can switch between THO and FHO modes for different loadings, voltage gains, and couplings conditions, e.g., dynamic powering of different moving pickups. To show the performance of the new tuning loops, laboratory prototypes with switching frequency of 20-50 kHz are implemented based on half-bridge and full-bridge inverters.
机译:本文提出了基于基本谐波操作(FHO)和三次谐波操作(THO)的功率和频率调谐环路,用于感应功率传输(IPT)系统。对于需要低电压增益的高频电源的应用(例如低压非接触式电池充电器),THO是一种有效的解决方案。而且,它可以减少轻载条件下的开关损耗并提高IPT系统的净效率。与诸如锁相环(PLL)电路之类的常规方法相比,所提出的方法受未对准的影响较小,并可以立即跟踪谐振频率。因此,它们可用于自切换电容器和可变耦合应用中。另外,新的调谐系统可以在THO和FHO模式之间切换,以适应不同的负载,电压增益和耦合条件,例如为不同移动拾音器动态供电。为了展示新调谐环的性能,基于半桥和全桥逆变器,实现了开关频率为20-50 kHz的实验室原型。

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