A miniature implantable microstrip antenna design for dual-band biotelemetry operations

Erdem Uras, M. Ucar, A. Sondas
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引用次数: 5

Abstract

In this study, an implantable microstrip sandwiched (IMS) antenna for dual-band biotelemetry communication is proposed. The proposed antenna is comprised of a spiral shaped radiating element and a bended microstrip line sections. The radiating element is sandwiched between two thin substrates backed by a rectangular ground plane (GP). In addition, a shorting pin (SP) which connects radiating element to GP is used for miniaturization purpose. By optimizing the proposed antenna in terms of its size, feeding and SP position, the IMS antenna with only 10.6x10x1.27 mm3 offers a dual band performance (VSWR<;2) covering medical implant communication services (MICS) 402{405 MHz) and industrial, scientific and medical (ISM) 2.4(2.48 GHz) bands. It is numerically demonstrated that the proposed implant antenna offers 50% and 29% impedance bandwidth at the designated ISM and MICS frequency bands respectively. In the paper, numerical results for the proposed design are presented.
一种用于双频生物遥测操作的微型植入式微带天线设计
本研究提出了一种用于双频生物遥测通信的植入式微带夹心(IMS)天线。所提出的天线由螺旋形辐射元件和弯曲微带线段组成。辐射元件夹在由矩形接平面(GP)支撑的两个薄衬底之间。此外,为了小型化的目的,还使用了一个将辐射元件连接到GP的短引脚(SP)。通过对天线的尺寸、馈电和SP位置进行优化,IMS天线的尺寸仅为10.6x10x1.27 mm3,可提供双频段性能(VSWR<;2),覆盖医疗植入通信服务(MICS) 402{405 MHz)和工业、科学和医疗(ISM) 2.4(2.48 GHz)频段。数值计算表明,所提出的植入天线在指定的ISM和MICS频段分别提供50%和29%的阻抗带宽。文中给出了该设计的数值结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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