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Variable Compensation Network for Achieving Constant Current or Voltage Output in IPT System

机译:可变补偿网络实现IPT系统中的恒流或电压输出

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摘要

This paper is intended to investigate a variable series-series (SS) compensation network of the loosely coupled transformer (LCT) in the inductive power transfer (IPT) system. With the proposed compensation network, an additional switch is used to facilitate the transition from the LC resonance condition to three order T-type resonance condition with the same operating frequency to achieve constant current (CC) constant voltage (CV) charge for EV (electric vehicle) system. The resonance conditions, output current or voltage, and efficiencies of compensation network are deduced both in CC mode and CV mode. An IPT EV charging system is designed. Zero current switching (ZCS) operation condition in CC mode and zero voltage switching (ZVS) in CV mode are achieved for all primary side MOSFETs, and 88.6 % efficiency in CC mode and 79.2 % efficiency in CV mode for the proposed compensation network achieved.
机译:本文旨在研究感应电力传输(IPT)系统中松散耦合变压器(LCT)的可变系列系列(SS)补偿网络。利用所提出的补偿网络,额外的开关用于促进从LC谐振条件到三阶T型共振条件的过渡,具有相同的工作频率,以实现EV的恒流(CC)恒定电压(CV)电荷(电动车辆)系统。在CC模式和CV模式下推导出补偿条件,输出电流或电压和补偿网络的效率。设计了IPT EV充电系统。对于所有初级侧MOSFET,实现了CC模式下的零电流切换(ZCS)操作条件,CV模式下的零电压切换(ZVS),CC模式的效率为88.6%,所以CC模式的效率为79.2%,所以实现补偿网络的CV模式。

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