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Design and Performance Analysis of a Miniaturized Implantable PIFA for Wireless Body Area Network Applications

机译:用于无线人体局域网的微型植入式PIFA的设计和性能分析

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摘要

A novel and miniaturized implantable PIFA (Planar Inverted-F Antenna) operates at the industrial, scientific and medical (ISM) band (2.4-2.4835 GHz) is proposed in this paper for wireless body area network applications. The actual dimension of the proposed implantable antenna is 8 mm × 6 mm × 1 mm (48 mm3) with a slot-less ground plane which reduces the design complexity. The tiny dimension of the proposed antenna makes it perfectly suitable for wireless body area network (WBAN) applications. Copper is used as the patch material and Rogers RO3210 is used as the substrate material of the proposed antenna. Biocompatible material Rogers RO3035 is also used to encapsulate the antenna to avoid direct contact with the human body. Different performance parameters of the antenna such as operating frequency, S11 parameter, Voltage Standing Wave Ratio (VSWR), directivity, total efficiency have been analyzed both in planar and bent conditions on the three-layer human tissue model by using CST Microwave Studio. Finally, Specific Absorption Rate (SAR) is evaluated to satisfy the antenna safety concern on the human body.
机译:本文提出了一种在工业,科学和医学(ISM)频段(2.4-2.4835 GHz)上运行的新型微型可植入PIFA(平面倒F天线),用于无线体域网应用。建议的可植入天线的实际尺寸为8 mm×6 mm×1 mm(48 mm \ n 3 \ n),它具有无槽接地平面,从而降低了设计复杂性。拟议天线的微小尺寸使其非常适合无线人体局域网(WBAN)应用。铜用作贴片材料,Rogers RO3210用作拟议天线的基底材料。生物相容性材料Rogers RO3035还用于封装天线,以避免与人体直接接触。天线的不同性能参数,例如工作频率S \ n 11 \ n参数已在三层人体组织模型的平面和弯曲条件下进行了分析,包括电压驻波比(VSWR),方向性和总效率使用CST Microwave Studio。最后,对比吸收率(SAR)进行评估,以满足对人体天线安全的关注。

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