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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Miniaturized Dual-Resonant Helix/Spiral Antenna System at MHz-Band for FSK Impulse Radio Intrabody Communications
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Miniaturized Dual-Resonant Helix/Spiral Antenna System at MHz-Band for FSK Impulse Radio Intrabody Communications

机译:MHz频段的小型化双谐振螺旋/螺旋天线系统,用于FSK脉冲无线电Introbody通信

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摘要

In this article, a miniaturized dual-resonant antenna system at MHz-band operating at around 20 and 50 MHz is proposed for frequency-shift keying impulse radio (FSK-IR) intrabody communications. This antenna system comprises a swallowable helix-coil in-body antenna with a hollow cylindrical shape of 10 mm diameter and 30 mm length, and two single band on-body matched planar spiral-coil antennas with a compact size of 79 mm x 72 mm x 2.8 mm. For in-body antenna design, a nonuniform helical pitch structure is utilized to produce dual-resonant frequencies. The soft ferrite magnetic sheet with high relative permeability and low dissipation factor is used as a flexible conformal substrate to realize antenna miniaturization without lumped element loading. Simulation results for antenna performance, electromagnetic field distribution, and specific absorption rate are presented with different tissue-type phantoms, as well as an anatomical numerical human model. In addition, experimental verification of antenna performance and implant transmission characteristics is also conducted in a liquid phantom. At an implant depth of 50 mm, the measured maximum transmission coefficients are -33 and -45 dB at the dual-resonant frequency bands, respectively. Simulation and measurement results demonstrate that the proposed dual-resonant antenna is suitable for the FSK-IR system and can be expected to realize a data rate as high as 10 Mb/s for biomedical implant applications at MHz-band.
机译:在本文中,提出了在20和50MHz的MHz波浪处的小型化双谐振天线系统,用于频移键控脉冲无线电(FSK-IR)IntraBody通信。该天线系统包括吞咽的螺旋线圈内天线,其中空圆柱形状为10mm直径和30mm长度,并且两个单带体匹配的平面螺旋线圈天线,紧凑的尺寸为79 mm x 72 mm x 2.8 mm。对于体内天线设计,利用不均匀的螺旋间距结构来产生双谐振频率。具有高相对渗透性和低耗散因子的软铁氧体磁性片用作柔性保形基底,以实现没有集体元件负载的天线小型化。天线性能,电磁场分布和特定吸收率的仿真结果用不同的组织型模组,以及解剖学数值人模型。另外,天线性能和植入物传输特性的实验验证也在液体模型中进行。在50mm的植入深度处,分别测量的最大透射系数是双谐振频带的-33和-45dB。模拟和测量结果表明,所提出的双谐振天线适用于FSK-IR系统,并且可以预期在MHz波段下实现高达10 MB / s的数据速率。

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