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Variable-Parameter T-Circuit-Based IPT System Charging Battery With Constant Current or Constant Voltage Output

机译:基于可变参数T电路的IPT系统充电电池,具有恒流或恒压输出

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摘要

Load-independent output characteristics of inductive power transfer (IPT) systems are increasingly popular in battery charging. This paper proposes a novel variable-parameter-T-circuit (VT) for an IPT system charging a battery with constant current (CC) or constant voltage (CV) output. The VT can transfer a CC/CV input to a CC or CV output by using an ac switch and a passive component (inductor or capacitor). An IPT system with a VT for CC-CV charging can reduce the number of passive components and ac switches. Besides, the proposed VT merits more design freedom of charge current/voltage with the constraints imposed by the loosely coupled transformer parameters compared to that of the traditional one. In addition, there are three kinds of VTs for various IPT charging systems with different requirements. A 400 W laboratory-scale prototype with a 150 mm air gap was built to verify the theoretical analyses. Both electronic load and lead-acid battery are utilized to verify the charging profile of the proposed method. The experimental results of the IPT system indicate that the fluctuation of the charging current in CC mode is less than 2%, and the change rate of charging voltage in CV mode is within 2.9%. The maximum overall efficiency 93.93% of the charging system is achieved from a dc 110 V input to a dc 100 V output.
机译:负载无限值电源传输的独立输出特性(IPT)系统在电池充电中越来越流行。本文提出了一种新型可变参数-T电路(VT),用于对具有恒定电流(CC)或恒定电压(CV)输出的电池充电的IPT系统。 VT可以通过使用AC开关和无源元件(电感器或电容)将CC / CV输入传送到CC或CV输出。具有用于CC-CV充电VT的IPT系统可以减少无源元件和交流开关的数量。此外,所提出的VT优异的限制电流/电压的设计自由度与传统的变压器参数相比,由松散耦合的变压器参数施加的约束。此外,各种IPT充电系统有三种具有不同要求的VTS。建立了400 W实验室规模的原型,用于验证理论分析。电子负载和铅酸电池都用于验证所提出的方法的充电轮廓。 IPT系统的实验结果表明CC模式的充电电流的波动小于2%,CV模式充电电压的变化率在2.9%范围内。从DC 110 V输入到DC 100V输出的DC 110 V来实现充电系统的最大总效率93.93%。

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