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Wireless Power Transfer via Magnetic Resonance Coupling (MRC) with Reduced Standby Power Consumption

机译:无线电源通过磁共振耦合(MRC)传输,具有降低的备用功耗

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摘要

Wireless power transfer (WPT) technology with various transfer mechanisms such as inductive coupling, magnetic resonance and capacitive coupling is being widely researched. Until now, power transfer efficiency (PTE) and power transfer capability (PTC) have been the primary concerns for designing and developing WPT systems. Therefore, a lot of studies have been documented to improve PTE and PTC. However, power consumption in the standby mode, also defined as the no-load mode, has been rarely studied. Recently, since the number of WPT products has been gradually increasing, it is necessary to develop techniques for reducing the standby power consumption of WPT systems. This paper investigates the standby power consumption of commercial WPT products. Moreover, a standby power reduction technique for WPT systems via magnetic resonance coupling (MRC) with a parallel resonance type resonator is proposed. To achieve a further standby power reduction, the voltage control of an AC/DC travel adapter is also adopted. The operational principles and characteristics are described and verified with simulation and experimental results. The proposed method greatly reduces the standby power consumption of a WPT system via MRC from 2.03 W to 0.19 W.
机译:具有各种传送机构的无线电力传输(WPT)技术,例如电感耦合,磁共振和电容耦合。到目前为止,电力传输效率(PTE)和功率传输能力(PTC)是设计和开发WPT系统的主要问题。因此,已记录了许多研究以改善PTE和PTC。然而,待机模式中的功耗也被定义为空载模式,已经很少研究。最近,由于WPT产品的数量逐渐增加,因此有必要开发用于减少WPT系统的备用功耗的技术。本文调查了商业WPT产品的备用电力消耗。此外,提出了通过具有平行谐振型谐振器的磁共振耦合(MRC)的WPT系统的备用功率降低技术。为了实现进一步的待机功率降低,还采用了AC / DC旅行适配器的电压控制。使用模拟和实验结果来描述和验证操作原理和特性。该方法大大降低了通过MRC从2.03 W到0.19W的WPT系统的备用功耗。

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