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Trustworthy and resilient time synchronization in wireless sensor networks.

机译:无线传感器网络中可信赖的弹性时间同步。

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摘要

Wireless sensor networks have received a lot of attention recently due to its wide applications. Accurate and synchronized time is crucial in many sensor network applications. A number of time synchronization schemes have been proposed recently to address the resource constraints in sensor networks. However, all these techniques cannot survive malicious attacks in hostile environments.; This dissertation includes three techniques to achieve secure time synchronization in different scopes of sensor networks. First, we develop a secure single-hop pair-wise time synchronization technique that provides time difference between two neighbor nodes using hardware-assisted, authenticated medium access control (MAC) layer timestamping. This technique can effectively defeat external attacks that attempt to mislead single-hop pair-wise time synchronization.; Second, we propose a fault-tolerant cluster-wise time synchronization scheme to provide a common clock among a cluster of nodes, where the nodes in the cluster can communicate through broadcast. This scheme guarantees an upper bound of time difference between normal nodes in a cluster, provided that the malicious nodes are no more than one third of the cluster. Unlike the traditional fault-tolerant time synchronization approaches, the proposed technique does not introduce collisions between synchronization messages, nor does it require costly digital signatures.; Third, we propose two secure and resilient global time synchronization schemes: level-based time synchronization and diffusion-based time synchronization. The basic idea of both schemes is to provide redundant ways for one node to synchronize its clock with another far-away node, so that it can tolerate partially missing or false synchronization information provided by compromised nodes. The level-based scheme builds a level hierarchy in the sensor network, and then synchronizes the whole network level by level. The diffusion-based scheme allows each node to diffuse its clock to its neighbor nodes after it has been synchronized. Both schemes are secure against external attacks and resilient against compromised nodes. We implement a secure and resilient global time synchronization protocol, TinySeRSync, on MICAz motes running TinyOS. The experimental results indicate that TinySeRSync is a practical system for secure and resilient global time synchronization in wireless sensor networks.
机译:无线传感器网络由于其广泛的应用近来受到了广泛的关注。在许多传感器网络应用中,准确和同步的时间至关重要。最近已经提出了许多时间同步方案来解决传感器网络中的资源限制。但是,所有这些技术都无法在敌对环境中遭受恶意攻击。本文包括三种在传感器网络不同范围内实现安全时间同步的技术。首先,我们开发了一种安全的单跳成对时间同步技术,该技术使用硬件辅助的,经过身份验证的媒体访问控制(MAC)层时间戳来提供两个相邻节点之间的时间差。这种技术可以有效地击败试图误导单跳成对时间同步的外部攻击。其次,我们提出了一种容错的群集时间同步方案,以在节点群集之间提供公共时钟,其中群集中的节点可以通过广播进行通信。如果恶意节点不超过群集的三分之一,则此方案可保证群集中正常节点之间的时间差的上限。与传统的容错时间同步方法不同,该技术不会在同步消息之间引入冲突,也不需要昂贵的数字签名。第三,我们提出了两种安全且有弹性的全局时间同步方案:基于级别的时间同步和基于扩散的时间同步。两种方案的基本思想是为一个节点提供冗余方式,使其一个时钟与另一个遥远节点同步,以便它可以容忍受感染节点提供的部分丢失或错误的同步信息。基于级别的方案在传感器网络中建立级别层次结构,然后逐级同步整个网络级别。基于扩散的方案允许每个节点在同步后将其时钟扩散到其相邻节点。两种方案都是安全的,可以抵抗外部攻击,并可以抵抗受损的节点。我们在运行TinyOS的MICAz节点上实现了安全且有弹性的全局时间同步协议TinySeRSync。实验结果表明,TinySeRSync是用于无线传感器网络中安全,有弹性的全局时间同步的实用系统。

著录项

  • 作者

    Sun, Kun.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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