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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Design and Implementation of Dual-Mode Inductors for Dual-Band Wireless Power Transfer Systems
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Design and Implementation of Dual-Mode Inductors for Dual-Band Wireless Power Transfer Systems

机译:用于双频无线功率传输系统的双模电感器的设计与实现

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摘要

We propose a dual-band wireless power transfer (WPT) system employing a dual-mode inductor. The dual-mode inductor is possible through enforcing a self-resonance condition by loading an inductor in series by a tank circuit. In return, two distinct resonances are achieved, simultaneously, utilizing a single compensation capacitor as the inductance of the dual-mode inductor appears with a smaller value after its self-resonance. Also, by maintaining the same mutual coupling, the coupling coefficient becomes larger at the higher resonance, which allows for the employment of the same source/load admittance inversion network to achieve maximum power transfer at both of the operating frequency bands, concurrently. We verify the operation by fabricating a dual-band WPT system, which shows measured efficiencies of 70% and 69% at 90.3 MHz and 138.8 MHz, correspondingly. The size of the WPT system is 50x 50 mm(2) and has a transfer distance of 40 mm.
机译:我们提出一种采用双模式电感器的双频带无线功率传输(WPT)系统。通过由谐振电路串联加载电感器来增强自谐振条件,从而可以实现双模电感器。作为回报,同时利用单个补偿电容器实现了两个不同的谐振,因为双模电感器的电感在其自谐振之后以较小的值出现。同样,通过保持相同的互耦,耦合系数在较高的谐振下变大,这允许采用相同的源/负载导纳反转网络,以同时在两个工作频带上实现最大功率传输。我们通过制造双频WPT系统来验证操作,该系统在90.3 MHz和138.8 MHz处的测量效率分别为70%和69%。 WPT系统的尺寸为50x 50 mm(2),传输距离为40 mm。

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