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Towards secure and scalable tag search approaches for current and next generation RFID systems.

机译:寻求针对当前和下一代RFID系统的安全且可扩展的标签搜索方法。

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摘要

The technology behind Radio Frequency Identification (RFID) has been around for a while, but dropping tag prices and standardization efforts are finally facilitating the expansion of RFID systems. The massive adoption of this technology is taking us closer to the well known ubiquitous computing scenarios. However, the widespread deployment of RFID technology also gives rise to significant user security issues. One possible solution to these challenges is the use of secure authentication protocols to protect RFID communications. A natural extension of RFID authentication is RFID tag searching, where a reader needs to search for a particular RFID tag out of a large collection of tags. As the number of tags of the system increases, the ability to search for the tags is invaluable when the reader requires data from a few tags rather than all the tags of the system. Authenticating each tag one at a time until the desired tag is found is a time consuming process. Surprisingly, RFID search has not been widely addressed in the literature despite the availability of search capabilities in typical RFID tags. In this thesis, we examine the challenges of extending security and scalability issues to RFID tag search and suggest several solutions.This thesis aims to design RFID tag search protocols that ensure security and scalability using lightweight cryptographic primitives. We identify the security and performance requirements for RFID systems. We also point out and explain the major attacks that are typically launched against an RFID system. This thesis makes four main contributions. First, we propose a serverless (without a central server) and untraceable search protocol that is secure against major attacks we identified earlier. The unique feature of this protocol is that it provides security protection and searching capacity same as an RFID system with a central server. In addition, this approach is no more vulnerable to a single point-of-failure. Second, we propose a scalable tag search protocol that provides most of the identified security and performance features. The highly scalable feature of this protocol allows it to be deployed in large scale RFID systems. Third, we propose a hexagonal cell based distributed architecture for efficient RFID tag searching in an emergency evacuation system. Finally, we introduce tag monitoring as a new dimension of tag searching and propose a Slotted Aloha based scalable tag monitoring protocol for next generation WISP (Wireless Identification and Sensing Platform) tags.
机译:射频识别(RFID)背后的技术已经存在了一段时间,但是标签价格的下降和标准化的努力最终促进了RFID系统的扩展。这项技术的大规模采用使我们更接近众所周知的普适计算场景。但是,RFID技术的广泛部署也引起了重大的用户安全问题。解决这些挑战的一种可能的解决方案是使用安全身份验证协议来保护RFID通信。 RFID身份验证的自然扩展是RFID标签搜索,其中读者需要从大量标签中搜索特定的RFID标签。随着系统标签数量的增加,当阅读器需要来自几个标签而不是系统所有标签的数据时,搜索标签的能力将非常宝贵。一次验证每个标签直到找到所需标签都是一个耗时的过程。出人意料的是,尽管在典型的RFID标签中具有搜索功能,但RFID搜索尚未在文献中得到广泛解决。在本文中,我们研究了将安全性和可扩展性问题扩展到RFID标签搜索的挑战,并提出了几种解决方案。本文旨在设计可使用轻量级密码原语确保安全性和可扩展性的RFID标签搜索协议。我们确定了RFID系统的安全性和性能要求。我们还指出并解释了通常针对RFID系统发起的主要攻击。本论文主要有四个方面的贡献。首先,我们提出了一种无服务器(无中央服务器)和不可追踪的搜索协议,该协议可防止我们之前发现的重大攻击。该协议的独特之处在于,它与具有中央服务器的RFID系统一样,提供了安全保护和搜索功能。此外,这种方法不再易受单个故障点的影响。其次,我们提出了一种可伸缩的标签搜索协议,该协议可提供大多数已确定的安全性和性能特征。该协议的高度可​​扩展特性使其可以部署在大规模RFID系统中。第三,我们提出了一种基于六边形单元的分布式架构,用于在紧急疏散系统中进行高效的RFID标签搜索。最后,我们将标签监控作为标签搜索的新维度,并为下一代WISP(无线识别和传感平台)标签提出了一种基于Slotted Aloha的可扩展标签监控协议。

著录项

  • 作者

    Rahman, Farzana.;

  • 作者单位

    Marquette University.;

  • 授予单位 Marquette University.;
  • 学科 Computer Science.
  • 学位 M.S.
  • 年度 2010
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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