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Chipless RFID sensor tag system with microstrip transmissionline based ID generation schemes.

机译:具有基于微带传输线的ID生成方案的无芯片RFID传感器标签系统。

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摘要

This dissertation presents a chipless radio frequency identification (RFID) sensor tag system consisting of passive chipless RFID sensor tags and specialized reader. The chipless sensor tags are fabricated on a flexible substrate and contain an ID generation circuit, a sensor, and a microstrip antenna. The ID generation circuit consists of meandered microstrip transmission lines and uses a novel reflection and delay based ID generation scheme. The scheme, using an input RF pulse, constructs an on-off keying (OOK) or pulse position modulated (PPM) signal pattern representing a unique ID code. Two transmission lines and OOK representation are used and the generation of ten different ID codes are demonstrated. The integrated ID generation circuit, sensor, and antenna use a single transmission line and PPM representation, and demonstrate the generation of eight different ID codes. However, the presented schemes allow the generation of higher combinations of bits.;A practical method to measure radar cross section (RCS) parameters of antennas that provides complete and more accurate information on scattering properties of antennas, essential for chipless sensor tag design, is presented. The new method uses minimum mean square error estimation solution of a derived received backscattered signal power equation and provides load independent structural-mode RCS, antenna-mode RCS, and relative phase factor of the measured antenna. Two configurations of the chipless sensor tags configuration-I (conf-I) and configuration-II (conf-II) are presented.;In conf-I tags, sensors are connected as a load to the antenna and the sensor information is amplitude modulated in the backscattered signal. The testing with conf-I temperature sensor tag resulted in a 28% amplitude change when the temperature at the tag changes from 27°C to 140°C. In conf-II tags, sensors are connected as load to the ID generation circuit and the sensor information is phase modulated in the antenna-mode scattered signal. With the conf-II ethylene sensor tag, a phase change of 33° is observed when the ethylene concentration at the tag changes from 0 to 100 ppm. The specialized reader system is comprised of an analog reader that wirelessly communicates with the sensor tags and a single board computer that computes the sensor information from the received signal. The reader system constructs a 96 bit serialized global trade item number (SGTIN-96) electronic product code (EPC) format unique RFID tag data frame, including 16 bit sensor information, and makes the information available on a secure web interface accessible from cyberspace. The presented sensor tag system has the advantages of passive and chipless sensor tag operation, while offering a wide range of sensors types for integration. Moreover, it offers a viable alternative solution to existing active as well as passive RFID sensor tag systems (eg. SAW based RFID sensor tag systems).
机译:本文提出了一种无源射频识别(RFID)传感器标签系统,该系统由无源无芯RFID传感器标签和专用读取器组成。无芯片传感器标签被制造在柔性基板上,并包含ID生成电路,传感器和微带天线。 ID生成电路由蜿蜒的微带传输线组成,并使用一种新颖的基于反射和延迟的ID生成方案。该方案使用输入RF脉冲构造代表唯一ID码的开关键控(OOK)或脉冲位置调制(PPM)信号模式。使用了两条传输线和OOK表示,并演示了十个不同ID代码的生成。集成的ID生成电路,传感器和天线使用一条传输线和PPM表示,并演示了八个不同ID代码的生成。然而,所提出的方案允许生成更高的比特组合。测量天线的雷达截面(RCS)参数的实用方法是提供无散射传感器标签设计必不可少的关于天线散射特性的完整且更准确的信息。提出了。新方法使用了导出的接收反向散射信号功率方程的最小均方误差估计解,并提供了与负载无关的结构模式RCS,天线模式RCS和被测天线的相对相位因子。提出了无芯片传感器标签配置I(conf-I)和配置II(conf-II)的两种配置;在conf-I标签中,传感器作为负载连接到天线,并且传感器信息经过幅度调制在反向散射信号中。当conf-I温度传感器标签的温度从27°C变为140°C时,测试结果导致幅度变化了28%。在conf-II标签中,传感器作为负载连接到ID生成电路,并且传感器信息在天线模式的散射信号中被相位调制。使用conf-II乙烯传感器标签,当标签上的乙烯浓度从0变为100 ppm时,观察到33°的相变。专用读取器系统包括与传感器标签进行无线通信的模拟读取器,以及从接收到的信号中计算传感器信息的单板计算机。阅读器系统构造一个96位序列化的全球贸易商品编号(SGTIN-96)电子产品代码(EPC)格式的独特RFID标签数据帧,包括16位传感器信息,并使该信息可从网络空间访问的安全Web界面上使用。提出的传感器标签系统具有无源和无芯片传感器标签操作的优点,同时提供了用于集成的多种传感器类型。此外,它为现有的有源和无源RFID传感器标签系统(例如基于SAW的RFID传感器标签系统)提供了可行的替代解决方案。

著录项

  • 作者

    Shrestha, Sudhir.;

  • 作者单位

    Louisiana Tech University.;

  • 授予单位 Louisiana Tech University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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