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Equivalent circuit for repeater antenna for wireless power transfer via magnetic resonant coupling considering signed coupling

机译:考虑有符号耦合的通过电磁谐振耦合进行无线电力传输的中继器天线的等效电路

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Wireless power transfer technology has received much attention recently. Although the technology has been existed for a long time, never before has it has received the current level of attention. This can be primarily attributed to social demand related to the increased use of mobile devices, which need frequent recharging, and plugging the device into an outlet is not convenient. It is also due to changes in available technology. The emergence of electromagnetic resonant coupling, which works over a large air gap with high efficiency has until recently not been possible with typical technologies. However, there are limitations to using only a transmitting and a receiving antenna. Repeater antennas have been proposed to extend the length of the air gap. Long distance power transfer is achieved by simply installing a repeater between the transmitting and receiving stations. And by installing repeaters inside walls, below desks, and under the floor, it will be possible to realize a fully wireless house in which it is possible to charge devices anywhere inside its confines. Previous studies have demonstrated that a repeater antenna can extend the distance of the power transfer with the installation of a repeater antenna between a transmitting antenna and a receiving antenna. Detailed studies of mutual inductance, the position of repeater antennas and theoretical studies about equivalent circuits cannot be found in the literature. This paper proposes that theoretical study of equivalent circuits of repeater antennas it includes the problem of sign of mutual inductance which is occurred when the repeater antennas are used.
机译:无线功率传输技术最近受到了广泛的关注。尽管该技术已经存在了很长时间,但它从未受到当前的关注。这主要归因于与增加使用移动设备有关的社会需求,需要频繁充电,并且将设备插入插座并不方便。这也是由于可用技术的变化。直到最近,典型技术才出现了在大的气隙上高效工作的电磁谐振耦合。但是,仅使用发射天线和接收天线存在局限性。已经提出了中继天线来延长气隙的长度。只需在发射站和接收站之间安装中继器即可实现长距离电力传输。并且通过在墙壁内,桌子下方和地板下安装中继器,将有可能实现一个完全无线的房屋,在该房屋中可以对设备在其限制范围内的任何位置进行充电。先前的研究表明,通过在发射天线和接收天线之间安装转发器天线,转发器天线可以延长功率传输的距离。在文献中找不到关于互感,中继器天线的位置以及等效电路的理论研究的详细研究。本文提出了对中继器天线等效电路的理论研究,其中包括使用中继器天线时会出现互感符号的问题。

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