A ZVS Pulsewidth Modulation Scheme for Active Class-E Rectifier Based IPT Systems

Bo Xue, Hao Wang, Rong He, Peng Zhao, Minfan Fu, Yu Liu
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Abstract

In inductive power transfer (IPT) systems, it is usually desirable to have an adjustable output voltage. This paper proposes a pulsewidth modulation scheme for active class-E rectifier based IPT systems. The output voltage is regulated by the duty cycle of the active rectifier. Utilizing the proposed modulation scheme, the active MOSFET is turned on at the zero crossing point of its drain-source voltage. Thus, the power MOSFET of the rectifier is achieved with zero-voltage-switching (ZVS) condition over a wide output range. Detailed circuit analysis, modeling and parameters design are presented. The experimental results match well with the circuit modeling and validate the soft-switching operation and the output voltage regulation capabilities. The efficiencies of overall system and rectifier reach 90.22 % and 95.45 % at 120 W output respectively.
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基于有源e类整流器的IPT系统的ZVS脉宽调制方案
在感应功率传输(IPT)系统中,通常希望有一个可调的输出电压。提出了一种基于有源e类整流器的IPT系统脉宽调制方案。输出电压由有源整流器的占空比调节。利用所提出的调制方案,有源MOSFET在漏源极电压的零交叉点导通。因此,整流器的功率MOSFET在宽输出范围内实现了零电压开关(ZVS)条件。给出了详细的电路分析、建模和参数设计。实验结果与电路模型吻合较好,验证了软开关操作和输出稳压能力。在输出功率为120w时,整个系统和整流器的效率分别达到90.22%和95.45%。
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