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An inductive RFID system with build-in asynchronous ECC crypto-processor.

机译:具有内置异步ECC密码处理器的感应RFID系统。

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摘要

Radio Frequency Identification (RFID) has received a great deal of attention in past decades. It is an automatic identification system by replying and retrieving data remotely using RFID transponders. Basically, RFID systems can be divided into three main categories: short transmission range, medium transmission range, and long transmission range.;Short and medium range RFIDs generally are passive transponders while long range RFID is of either passive or active type. In this thesis, a short transmission range RFID transponder is presented. This is a passive transponder which generates power for internal circuitry by inductive coupling. For automatic identification applications such as electronic money tickets, the requirements of endurance, weight, size as well as cost appeal to use passive transponder rather than active transponder. Researches on the passive transponders have created a great challenge for engineers in terms of the tradeoff between power constraints, processing power and data transmission range.;The presented RFID transponder system adheres to the ISO 14443 standard Type B specification communication interface, which operates at 13.56MHz carrier frequency with a maximum read range around 50 mm. This research implemented a low power, high security, and long read range RFID transponder. For the analog RF interface, a series of novel architectures are adopted to improve the data transmission range. The digital core in the presented crypto-processor for data security. The asynchronous architecture has the advantages of fast computation time, low power consumption and small area. These are the attractive reasons to implement the core processing units using an asynchronous architecture.;This RFID system was fabricated with a 0.35um two-poly four-metal standard CMOS process with the silicon area of 1516 um x 1625 um. The measurement results show that the analog RF interface can generate a maximum 5.45mW power while the digital core circuit consumes only 2.77mW. In the wireless communication tests, the transponder read range can reach as far as 50 mm.
机译:在过去的几十年中,射频识别(RFID)受到了广泛的关注。它是一个自动识别系统,可通过RFID应答器远程答复和检索数据。基本上,RFID系统可分为三大类:短距离,中距离和长距离;短距离和中距离RFID通常是无源应答器,而远距离RFID则是无源或有源类型。本文提出了一种短传输距离的RFID应答器。这是一种无源应答器,可通过电感耦合为内部电路产生功率。对于自动识别应用程序(例如电子货币票证),使用无源应答器而不是有源应答器的耐用性,重量,尺寸和成本要求很高。无源应答器的研究在功率限制,处理能力和数据传输范围之间的权衡方面给工程师带来了巨大挑战。提出的RFID应答器系统符合ISO 14443标准B型规范通信接口,该接口的工作频率为13.56 MHz载波频率,最大读取范围约为50 mm。这项研究实现了一种低功耗,高安全性和长距离读取范围的RFID应答器。对于模拟RF接口,采用了一系列新颖的体系结构来改善数据传输范围。所提供的加密处理器中的数字核心可确保数据安全。异步架构的优点是计算时间快,功耗低,占地面积小。这些是使用异步体系结构实现核心处理单元的诱人原因。该RFID系统采用0.35um的二重四金属标准CMOS工艺制造,硅面积为1516 um x 1625 um。测量结果表明,模拟RF接口可产生最大5.45mW的功率,而数字核心电路仅消耗2.77mW。在无线通信测试中,应答器读取范围可以达到50毫米。

著录项

  • 作者

    Leung, Pak Keung.;

  • 作者单位

    The Chinese University of Hong Kong (Hong Kong).;

  • 授予单位 The Chinese University of Hong Kong (Hong Kong).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 220 p.
  • 总页数 220
  • 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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