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Secondary Side Output Voltage Stabilization of an IPT System by Tuning/Detuning through a Serial Tuned DC Voltage-controlled Variable Capacitor

机译:通过串行调谐的直流压控可变电容器进行调谐/失谐,从而使IPT系统的次级侧输出电压稳定

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摘要

This paper proposes a method to stabilize the output voltage of the secondary side of an Inductive Power Transfer (IPT) system through tuning/detuning via a serial tuned DC Voltage-controlled Variable Capacitor (DVVC). The equivalent capacitance of the DVVC changes with the conduction period of a diode in the DVVC controlled by DC voltage. The output voltage of an IPT system can be made constant when this DVVC is used as a variable resonant capacitOr combined with a PI controller generating DC control voltage according to the fluctuations of the output voltage. Since a passive diode instead of an active switch is used in the DVVC, there are no active switch driving problems such as a separate voltage source or gate drivers, which makes the DVVC especially advantageous when used at the secondary side of an IPT system. Moreover, since the equivalent capacitance of the DVVC can be controlled smoothly with a DC voltage and the passive diode generates less EMI than active switches, the DVVC has the potential to be used at much higher frequencies than traditional switch mode capacitors.
机译:本文提出了一种通过串联调谐的直流电压控制可变电容器(DVVC)进行调谐/失谐来稳定感应功率传输(IPT)系统次级侧输出电压的方法。 DVVC的等效电容随由直流电压控制的DVVC中二极管的导通周期而变化。当此DVVC用作可变谐振电容或与PI控制器结合使用时,可以使IPT系统的输出电压恒定,该PI控制器根据输出电压的波动生成DC控制电压。由于在DVVC中使用了无源二极管而不是有源开关,因此不存在诸如单独的电压源或栅极驱动器之类的有源开关驱动问题,这使得DVVC在IPT系统的次级侧使用时尤其有利。此外,由于可以通过DC电压平滑地控制DVVC的等效电容,并且无源二极管产生的电磁干扰要少于有源开关,因此DVVC的使用频率可能比传统的开关模式电容器高得多。

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