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Dual Band, Miniaturized, Implantable Antenna Design with On-body Antennas for Wireless Health Monitoring

机译:双频带,小型化,可植入天线设计,具有用于无线健康监控的身体上的天线

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摘要

A modified Hilbert fractal geometry and serpentine radiator-based implant antenna is proposed for dual band medical operations in both the MICS band (402-405 MHz) and ISM band (2.4-2.48 GHz). The antenna has miniaturized dimensions of 5.5 x 7.6 x 0.8 mm(3) (width x height x thickness) and is simulated inside a four layer (air, skin, fat and muscle) model with dimensions of 150 mm x 75 mm x 55 mm. A Zirconia (epsilon(r)=29) superstrate and shorting pin were utilized to achieve biocompatibility and the desired resonance. Relatively stable and omni-directional radiation patterns were achieved for the dual band operation. An ISM band on-body antenna (5.8 x 5.5 x 0.8 mm(3)) was proposed to generate a wake-up signal while the wireless telemetry transmission was achieved using the MICS band onbody antenna (5.8 x 5.5 x 0.8 mm(3)). Implant and on body antennas demonstrated a reflection coefficient (S-11) better than -10 dB characteristics. To adhere to the SAR regulation limit of 1.6W/kg, the peak incident power should not exceed 0.25 mW and 0.2 mW for the ISM band and MISC band on-body antennas respectively. Propagation channel characteristics were simulated by observing the S-12 and S-13 characteristics and satisfactory results were achieved. The peak gain for the implant, MICS band and ISM band on-body antennas were -39.8 dBi, -35.6 dBi and -23 dBi, respectively due to the miniature dimensions. The miniaturized characteristics, dual-band operation, biocompatibility and stable characteristics in the presence of human tissue model make both the implant and on-body antennas suitable for biomedical monitoring systems.
机译:提出了一种改进的Hilbert分形几何和基于蛇形辐射器的植入天线,用于MICS频段(402-405 MHz)和ISM频段(2.4-2.48 GHz)中的双频医疗操作。天线的小型化尺寸为5.5×7.6×0.8mm(3)(宽度x高x厚度),在四层(空气,皮肤,脂肪和肌肉)模拟内,尺寸为150 mm x 75 mm x 55 mm 。使用氧化锆(ε(R)= 29)超晶和短路销来实现生物相容性和所需的共振。对双频带操作实现了相对稳定的辐射辐射模式。提出了一个ISM频段(5.8 x 5.5×0.8mm(3)),以产生唤醒信号,而使用MICS频带在天线上实现无线遥测传输(5.8 x 5.5 x 0.8 mm(3) )。植入物和身体天线展示了优于-10dB特性的反射系数(S-11)。要遵守SAR调节限制为1.6W / kg,分别不应超过ISM频带和MISC带内天线的0.25mW和0.2 mW。通过观察S-12和S-13特性和令人满意的结果,模拟了传播信道特性。由于微型尺寸,植入物,MICS带和ISM频带上的植入物,MICS带和ISM频带上的峰值增益分别为-39.8dBi,-35.6 dbi和-23 dBi。在人体组织模型存在下的小型化特性,双带操作,生物相容性和稳定特性使得适用于生物医学监测系统的植入物和体内天线。

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