Injection-Locked Power Oscillator for Resonance Frequency Tracking in Wireless Power Transfer

Guangyin Feng, Ji-Jon Sit
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引用次数: 2

Abstract

This paper presents a transmitter architecture for wireless power transfer with automatic resonance frequency tracking to maintain high efficiency over wide variations of antenna distance. By injection-locking the source oscillator to the output resonance in a positive feedback loop, the closed-loop transmitter functions as a power oscillator with the oscillation frequency determined by the most dominant resonance in the coupled antennas. We show that this frequency tracking minimizes the change in input impedance presented to the power amplifier (PA), and hence mitigates mismatch that can cause a sharp non-linear drop in PA efficiency. The power oscillator was tested well above and below critical coupling, and maintained PA efficiency above 60 % even when highly over-coupled at 25 % spacing (10mm/40mm) below critical coupling. Compared to an open-loop system, the charging range with efficiency over 50 % is doubled.
用于无线电力传输中谐振频率跟踪的注入锁定功率振荡器
本文提出了一种具有自动共振频率跟踪功能的无线电力传输发射机结构,可在天线距离变化较大的情况下保持高效率。通过在正反馈回路中将源振荡器注入锁定到输出谐振,闭环发射机作为功率振荡器,其振荡频率由耦合天线中最主要的谐振决定。我们表明,这种频率跟踪最小化了功率放大器(PA)输入阻抗的变化,从而减轻了可能导致PA效率急剧非线性下降的不匹配。功率振荡器在高于和低于临界耦合的情况下进行了测试,即使在距离低于临界耦合25% (10mm/40mm)的高度过耦合情况下,功率振荡器的效率也保持在60%以上。与开环系统相比,充电效率超过50%的充电范围增加了一倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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