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High-Frequency Voltage and Current Sense Circuits for Inductive Power Transfer Systems

机译:电感电力传输系统的高频电压和电流检测电路

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摘要

This article proposes a voltage sense circuit and a current sense circuit for extracting the fundamental ac voltage and current in variable-frequency inductive power transfer systems. Particularly, the proposed circuits are designed for an electric vehicle (EV) wireless charger. A current source is generated via a high resistance and a current transformer in these two sense circuits, respectively. The main part of both sense circuits uses the "double resonance" and "critical damping" principles to gain a stable voltage gain and a linear phase response in the operating frequency band. The ac output voltage is processed by a rectifier for amplitude measurement and by a comparator for phase detection. Meanwhile, the harmonic components are effectively filtered due to the band-pass property of the sense circuits, hence their impact on the ac output voltage is negligible. The operating principle, parameter design method and parameter sensitivity analysis are discussed in detail. The feasibility of the proposed sense circuits is verified by calculations and experiments. (This article is accompanied by two videos demonstrating the performance of the voltage sense circuit.)
机译:本文提出了一种电压感应电路和电流检测电路,用于提取可变频率感应电力传输系统中的基本交流电压和电流。特别是,所提出的电路设计用于电动车辆(EV)无线充电器。通过高电阻和电流互感器分别在这两个感测电路中产生电流源。两个感测电路的主要部分使用“双共振”和“临界阻尼”原理来获得工作频带中的稳定电压增益和线性相位响应。 AC输出电压由整流器处理,用于幅度测量和通过比较器进行相位检测。同时,由于感测电路的带通量,有效地过滤谐波分量,因此它们对交流输出电压的影响可以忽略不计。详细讨论了操作原理,参数设计方法和参数灵敏度分析。通过计算和实验验证了所提出的感测电路的可行性。 (本文伴随着两个视频,演示了电压感应电路的性能。)

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