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A Miniaturized Novel-Shape Dual-Band Antenna for Implantable Applications

机译:适用于植入式应用的小型新颖形状双频天线

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In this paper, a miniaturized novel-shape dual-band implantable antenna operating in the industrial, scientific, and medical bands (902-928 MHz and 2.4-2.4835 GHz) is developed for battery-powered implants. The Rogers ULTRALAM (epsilon(r) = 2.9 and tan delta = 0.0025) liquid crystalline polymer material with 0.1 mm thickness is used as both the substrate and superstrate. By employing the shorting strategy, a flower-shape radiating patch, and open-ended slots in the ground plane, the total volume of the proposed antenna is confined to 7 x 7.2 x 0.2 mm(3). In a homogeneous skin phantom, the presented antenna has a maximum gain of -28.44 and -25.65 dBi at 928 MHz and 2.45 GHz, respectively. The calculated maximum specific absorption rate values are in the safe limit and satisfy the IEEE C95.1-1999 and C95.1-2005 safety guidelines. The design, optimization, and analysis of the suggested antenna are performed using the finite difference time-domain- and finite-element method-based simulators. The results suggest that the flower-shape antenna exhibits fairly omnidirectional radiation patterns; therefore, it can be used for gastro applications and skin implantations. Through wireless communication link, we validated that at both frequencies (928 MHz and 2.45 GHz), 7 Kb/s and 78 Mb/s of data can be transmitted easily over more than 6 and 1.5 m, respectively. To verify the validity of the design and simulation results, measurements are performed by substituting the fabricated prototype in the American Society for Testing Materials and head phantoms containing saline solution. The proposed flower-shape antenna shows salient performance parameters compared with the recently proposed antennas.
机译:在本文中,针对电池供电的植入物,开发了一种在工业,科学和医学频带(902-928 MHz和2.4-2.4835 GHz)中运行的微型新型双频可植入天线。具有0.1mm厚度的Rogers ULTRALAM(ε= 2.9且tanδ= 0.0025)液晶聚合物材料被用作基底和上层板。通过采用短路策略,花朵形状的辐射贴片和接地平面中的开放式缝隙,拟议天线的总体积被限制在7 x 7.2 x 0.2 mm(3)。在同质的皮肤模型中,所呈现的天线分别在928 MHz和2.45 GHz时具有-28.44和-25.65 dBi的最大增益。计算得出的最大比吸收率值在安全极限内,并满足IEEE C95.1-1999和C95.1-2005安全准则。建议的天线的设计,优化和分析是使用基于时域有限元法和有限元法的仿真器进行的。结果表明,花形天线表现出相当全向的辐射方向图。因此,它可用于胃部应用和皮肤植入。通过无线通信链路,我们验证了在两个频率(928 MHz和2.45 GHz)下,分别可以轻松地在6 m和1.5 m以上的距离轻松传输7 Kb / s和78 Mb / s的数据。为了验证设计和仿真结果的有效性,通过将制造的原型替换为美国测试材料学会和含有盐溶液的头部模型进行测量。与最近提出的天线相比,提出的花形天线显示出显着的性能参数。

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