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Miniaturized and Differentially Fed Implantable Antenna for Biomedical Telemetry Applications

机译:用于生物医学遥测应用的小型化和差异供给的植入天线

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In this paper, a miniaturized patch antenna for biomedical telemetry application is proposed. The designed antenna operates in industrial-scientific-medical (ISM) band with a resonant frequency of 2.44 GHz. A slotted rectangular patch over the silicon substrate is used here and superstrate is employed for assuring biological safety. In this design, the dimension of the antenna is reduced significantly and differential feeding with coaxial cable is applied. The volume of the antenna is 20.24 cubic millimetre excluding superstrate. Antenna performance is evaluated in free space, skin phantom cube, and three-layer phantom model using the HFSS software. The value of the scattering parameter (S11) and realized gain of the antenna in free space at the resonant frequency (2.6 GHz) are -48.2 dB and -27.1 dBi, whereas the scattering parameter (S11) and realized gain of the antenna in skin phantom cube are -18.45 dB and -24.9 dBi at 2.44 GHz respectively. The simulated impedance bandwidth is 6.92% in free space and 6.55% in skin phantom cube. Because of its miniaturized structure, it has a great potential for the biomedical telemetry applications. Finally, the SAR of the antenna and link margin is calculated to limit the radiated power and make it perfectly biocompatible for practical use.
机译:本文提出了一种用于生物医学遥测应用的小型化贴片天线。设计的天线在工业科学医学(ISM)频带中运行,谐振频率为2.44 GHz。这里使用硅衬底上的开槽矩形贴片,采用过型以确保生物安全性。在这种设计中,天线的尺寸显着减小,并且施加了与同轴电缆的差速馈送。天线的体积为20.24立方毫米,不包括超级型号。使用HFSS软件在自由空间,肤色立方体和三层幻像模型中评估天线性能。散射参数的值(s 11 )在谐振频率(2.6GHz)的自由空间中的天线的实现增益为-48.2dB和-27.1dBi,而散射参数(s 11 )皮肤幻影立方体的天线的生长分别为-18.45dB和-24.9 dBi分别为2.44 GHz。模拟阻抗带宽在自由空间中为6.92 %,皮肤幻影立方体的6.55±%。由于其小型化结构,它对生物医学遥测应用具有巨大潜力。最后,计算天线和链接边缘的SAR以限制辐射功率,使其完全生物相容性以进行实际使用。

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