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On The Design Of Miniaturized Implantable Serpentine Radiating Structures Using Strip Loading Method

机译:条形加载法设计微型植入式蛇形辐射结构

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Implantable antennas have shown novel developments in wireless body centric paradigm. Miniaturization concept in the antenna is key to its success as it provides compactness to the user. The design and development of implantable antenna also deals with other issues like biocompatibility, propagation, detuning effects, patient safety etc. Hence miniaturization techniques are incorporated with antenna to fulfill a tradeoff between size and performance. This work aims to examine the miniaturization techniques and performance evaluation available for body area network (BAN) antennas in ISM band. In this work we consider strip loading techniques with miniaturized profile suitable for medical application. Notably, strip loaded at the center of Complementary split ring resonator (CSRR) structure has high degree of miniaturization when fed by a directional microstrip line. Five types of low profile serpentine antennas integrated with CSRR structures have been consider for analysis of medical implantable devices. Analysis of these design structure indicated a strong relation of resonance frequency with antenna geometry and the position of loaded strip. Finally, the designed S-CSRR5 structure exhibited good response in terms of resonance, impedance matching and gain. Measurement results also showed good agreement with the simulated design.
机译:植入式天线在以无线人体为中心的范例中显示出新颖的发展。天线中的小型化概念是其成功的关键,因为它为用户提供了紧凑性。植入式天线的设计和开发还处理其他问题,例如生物相容性,传播,失谐效应,患者安全性等。因此,天线采用了小型化技术,以实现尺寸和性能之间的权衡。这项工作旨在检查可用于ISM频段的人体局域网(BAN)天线的小型化技术和性能评估。在这项工作中,我们考虑了具有微型轮廓的带钢装载技术,该技术适用于医疗应用。值得注意的是,当由定向微带线馈电时,加载在互补开口环谐振器(CSRR)结构中心的带具有高度的小型化。已经考虑将五种与CSRR结构集成在一起的薄型蛇形天线用于医疗可植入设备的分析。对这些设计结构的分析表明,谐振频率与天线的几何形状和加载条的位置之间存在很强的关系。最后,设计的S-CSRR5结构在谐振,阻抗匹配和增益方面表现出良好的响应。测量结果也表明与仿真设计吻合良好。

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