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Automatic Resonance Frequency Tuning Method for Repeater in Resonant Inductive Coupling Wireless Power Transfer Systems

机译:谐振感应耦合无线电力传输系统中转发器的自动谐振频率调谐方法

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Intermediate resonator (repeater) in resonant inductive coupling wireless power transfer (RIC-WPT) systems can increase the transmission distance between the transmitting and receiving coils. The induced current in the repeater is easily affected by the frequency splitting phenomenon because the quality factor (Q-factor) of the repeater is generally as high as several hundreds. If this phenomenon occurs, induction of large current is often difficult in the repeater because the one peak characteristic of the induced current is no longer expected and the single peak of resonance splits into multiple peaks which shift the resonant frequency corresponding to the circuit parameters. In this paper, we approach this difficulty by applying an auxiliary circuit to the RIC-WPT system with the repeater. As a result, under the fixed operating frequency, the induced current in the repeater can be kept large even if the frequency splitting phenomenon occurs. The effectiveness of proposed system was supported by the simulation and experiment.
机译:谐振感应耦合无线电力传输(RIC-WPT)系统中的中间谐振器(中继器)会增加发射线圈和接收线圈之间的传输距离。由于转发器的品质因数(Q因子)通常高达数百,因此转发器中的感应电流很容易受到分频现象的影响。如果发生这种现象,则在中继器中通常难以感应大电流,因为不再期望感应电流的一个峰值特性,并且谐振的单个峰值分裂为多个峰值,这些峰值使对应于电路参数的谐振频率发生偏移。在本文中,我们通过将具有辅助功能的辅助电路应用于RIC-WPT系统来解决这一难题。结果,在固定的工作频率下,即使发生分频现象,也可以将中继器中的感应电流保持较大。仿真和实验证明了所提系统的有效性。

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