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A high efficiency wireless charging antenna with embedded magnetic core of segmented two-turns loop

机译:带有分段两匝环的嵌入式磁芯的高效无线充电天线

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In this paper, a high-efficiency transceiver antenna with embedded high magnetic permeability core of segmented two-turns loop is presented. It can be applied in the implanted device of monitoring human body neural with a wireless charging and bi-directional data transmission. The whole structure of transmitting and receiving antenna is basically similar; the difference is that receiving antenna is composed of double-sided ring and an embedded magnetic core at central position, transmitting antenna can be realized by dividing ring and welding fixed-value capacitor at corresponding position. The efficiency of wireless energy transfer has been improved and the specific absorption rate value has been reducing by simulation optimization. Compared with conventional loop antenna, our transmission efficiency has been exceed doubled and average SAR reduced by approximately 52%, when the distance of wireless transmission is 5mm. Finally, we fabricate a conventional loop antenna, a segmented loop antenna with embedded magnetic core and a kind of mixed liquid that have the same dielectric parameters with skin at 402MHz. Experiences show that actual results of transmission efficiency are in good agreement with the simulation results.
机译:本文提出了一种高效的收发器天线,该天线具有分段式两匝环的嵌入式高导磁率磁芯。它可以应用在通过无线充电和双向数据传输来监视人体神经的植入设备中。发射和接收天线的整体结构基本相似。区别在于接收天线由双面环和中心位置的嵌入式磁芯组成,发射天线可以通过将环分开并在相应位置焊接定值电容器来实现。通过仿真优化,提高了无线能量传输的效率,并且降低了比吸收率值。与传统的环形天线相比,当无线传输距离为5mm时,我们的传输效率提高了一倍以上,平均SAR降低了约52%。最后,我们制造了传统的环形天线,具有嵌入式磁芯的分段环形天线以及一种在402MHz时与皮肤具有相同介电参数的混合液体。经验表明,传输效率的实际结果与仿真结果吻合良好。

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