A New Receiver-Side Integrated Regulator With Phase Shift Control Strategy For Wireless Power Transfer System

Young-Dal Lee, Dongmin Kim, Chong-Eun Kim, G. Moon
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Abstract

In the receiver-side of wireless power transfer (WPT) system, the two power stages such as rectifier and battery control converter have been widely used due to its easy implementation. However, since the two power stages cause many number of components on the conduction path, it degrades the efficiency and power density of WPT system. Also, in the WPT system, because the communication control between transmitter and receiver side have to be used due to its physical contactless structure, the transmitter-side cannot effectively control receiver-side rectifier outputs. To relieve these drawbacks, this paper proposes a new receiver-side integrated regulator. The proposed structure is based on the general full-wave rectifier diode structure, and a single-switch is integrated for output voltage regulation with phase-shift control strategy. The proposed structure can reduce the number of components on the conduction path, resulting in high power density. Moreover, the proposed method can remove communication control with stable receiver-side outputs. Theoretical analysis and simulation results verify that the proposed structure and control method enables stable output voltage regulation without communication control between transmitter and receiver side. The effectiveness of the proposed structure and control method is verified by a prototype with input 380VDC and 150W output.
一种新的无线电力传输系统接收机侧集成相移控制策略
在无线电力传输(WPT)系统的接收端,整流器和电池控制变换器这两个功率级因其易于实现而得到了广泛的应用。然而,由于两个功率级在导通路径上产生了大量的元件,降低了WPT系统的效率和功率密度。另外,在WPT系统中,由于其物理非接触式结构,必须使用发送端与接收端的通信控制,因此发送端无法有效控制接收端整流器输出。为了克服这些缺点,本文提出了一种新的接收机侧集成稳压器。该结构基于一般的全波整流二极管结构,并集成了一个单开关,通过相移控制策略进行输出电压调节。所提出的结构可以减少导通路径上的元件数量,从而产生高功率密度。此外,该方法可以消除接收端输出稳定的通信控制。理论分析和仿真结果验证了所提出的结构和控制方法能够在不需要收发端通信控制的情况下实现稳定的输出电压调节。通过输入380VDC、输出150W的样机验证了所提出结构和控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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