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Compact Bioimplantable MICS and ISM Band Antenna Design for Wireless Biotelemetry Applications

机译:用于无线生物遥测应用的紧凑型可生物植入MICS和ISM频段天线设计

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A compact dual-band bioimplantable antenna with novel resonator geometry is designed for dual-band wireless biotelemetry applications in MICS and ISM bands. The radiating element geometry is based on an L-shaped transmission line fed anti-spiral resonator structure, which is loaded with the spiral resonator at the end to increase the effective electrical length. The effect of resonator geometric parameters on the return loss is discussed with the inclusion of three layered lossy human model in the numerical calculations. The footprint size of the optimized bioimplantable antenna is 15 x 15 x 1.92 mm^3, having the total surface area of λ0/20 x λ0/20, where λ0 is the free space wavelength at 403 MHz in MICS band. The compact dual-band antenna has the impedance bandwidth of 24.81% at 403 MHz and 14.7% at 2.45 GHz with the gain values -12.25dBi and -12.4 dBi in MICS and ISM bands, respectively. The average SAR values at the resonance frequencies are numerically computed to find out the input power delivered to the antenna for the reliable operation. The radiation parameters and 3D radiation patterns indicate the potential use of the proposed implantable antenna with the permissible gain in dual-band wireless biotelemetry applications.
机译:设计紧凑的具有新颖谐振器几何形状的双频生物可植入天线,用于MICS和ISM频段的双频无线生物遥测应用。辐射元件的几何形状基于L形传输线馈电的反螺旋谐振器结构,该结构的末端装有螺旋谐振器以增加有效电长度。在数值计算中包括三层有损人体模型,讨论了谐振器几何参数对回波损耗的影响。优化的生物可植入天线的占地面积为15 x 15 x 1.92 mm ^ 3,总表面积为λ0/ 20 xλ0/ 20,其中λ0是MICS频段中403 MHz的自由空间波长。紧凑型双频天线在403 MHz时的阻抗带宽为24.81%,在2.45 GHz时的阻抗带宽为14.7%,在MICS和ISM频段中的增益分别为-12.25dBi和-12.4 dBi。对共振频率下的平均SAR值进行数值计算,以找出传递到天线的输入功率,以确保可靠运行。辐射参数和3D辐射方向图表明,在双频无线生物遥测应用中,具有可允许增益的建议植入式天线的潜在用途。

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