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An implanted dipole antenna for RFID-based patient monitoring system

机译:用于RFID的患者监测系统的植入偶极天线

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Radio Frequency Identification (RFID) is one of the developed technologies, which is used in several applications, including for medical field applications. For patient monitoring purpose, the RFID system is consisted of a medical tag that is implanted into the human body and a reader unit that is installed away from the human either in proximity or far away from the human body. By this communication system, it can reduce medical error, the risk of the tag being lost, and can be used for uncooperative patient. The monitoring device will be connected to the existing network (wireless LAN and so on) allowing to provide the mobility of patient, the physicians or caregivers can get easily patient's medical information without spending a lot of time via such a network connection. In this study, it will propose a tiny dipole antenna for RFID tag that will be implanted into the body following it is enclosed by a silica glass to reduce the radiation effects on the human body. The antenna is numerically simulated by using a human arm model in the frequency of 924 MHz according to the RFID band allocation in Indonesia. This study also investigates two other different surrounding environment of the antenna in order to precisely understand about the antenna characteristics, i.e. antenna placed in free space and enclosed in silica glass material. Each environment gives effects on the antenna's resonant frequency including its bandwidth. Following the simulation, the antenna is fabricated and validated by the basic measurement. This paper will show the current results of the antenna characteristics in free space environment in order to validate its basic manner. The antenna is relatively very small dimension compared to the band wavelength with good performances in S parameter, sufficient bandwidth, and omnidirectional radiation pattern.
机译:射频识别(RFID)是开发技术之一,用于若干应用,包括用于医疗领域应用。对于患者监测目的,RFID系统由植入人体的医学标签和读取器单元组成,读取器单元在接近或远离人体中远离人体。通过此通信系统,它可以减少医疗误差,标签的风险丢失,并且可用于不合作的患者。监控设备将连接到现有网络(无线LAN等),允许提供患者的移动性,医生或护理人员可以轻松地通过这种网络连接花费大量时间来实现患者的医疗信息。在这项研究中,它将提出一种用于RFID标签的微小偶极天线,其将被植入体内的体内由二氧化硅玻璃包围以减少对人体的辐射效应。根据印度尼西亚的RFID乐队分配,通过使用924 MHz频率的人臂模型来数值模拟。本研究还研究了天线的另外两个不同的周围环境,以便精确地了解天线特性,即在自由空间中放置的天线并封闭在二氧化硅玻璃材料中。每个环境都对天线的谐振频率产生了影响,包括其带宽。在模拟之后,通过基本测量制造和验证天线。本文将显示自由空间环境中天线特性的当前结果,以验证其基本方式。与具有S参数,足够的带宽和全向辐射图案的频带波长相比,天线是相对非常小的尺寸。

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