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Secure location-aware communications in energy-constrained wireless networks.

机译:能量受限的无线网络中的安全的位置感知通信。

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摘要

Wireless ad hoc network has enabled a variety of exciting civilian, industrial and military applications over the past few years. Among the many types of wireless ad hoc networks, Wireless Sensor Networks (WSNs) has gained popularity because of the technology development for manufacturing low-cost, low-power, multi-functional motes. Compared with traditional wireless network, location-aware communication is a very common communication pattern and is required by many applications in WSNs. For instance, in the geographical routing protocol, a sensor needs to know its own and its neighbors' locations to forward a packet properly to the next hop.;The application-aware communications are vulnerable to many malicious attacks, ranging from passive eavesdropping to active spoofing, jamming, replaying, etc. Although research efforts have been devoted to secure communications in general, the properties of energy-constrained networks pose new technical challenges: First, the communicating nodes in the network are always unattended for long periods without physical maintenance, which makes their energy a premier resource. Second, the wireless devices usually have very limited hardware resources such as memory, computation capacity and communication range. Third, the number of nodes can be potentially of very high magnitude. Therefore, it is infeasible to utilize existing secure algorithms designed for conventional wireless networks, and innovative mechanisms should be designed in a way that can conserve power consumption, use inexpensive hardware and lightweight protocols, and accommodate with the scalability of the network.;In this research, we aim at constructing a secure location-aware communication system for energy-constrained wireless network, and we take wireless sensor network as a concrete research scenario. Particularly, we identify three important problems as our research targets: (1) providing correct location estimations for sensors in presence of wormhole attacks and pollution attacks, (2) detecting location anomalies according to the application-specific requirements of the verification accuracy, and (3) preventing information leakage to eavesdroppers when using network coding for multicasting location information. Our contributions of the research are as follows: First, we propose two schemes to improve the availability and accuracy of location information of nodes. Then, we study monitoring and detection techniques and propose three lightweight schemes to detect location anomalies. Finally, we propose two network coding schemes which can effectively prevent information leakage to eavesdroppers. Simulation results demonstrate the effectiveness of our schemes in enhancing security of the system. Compared to previous works, our schemes are more lightweight in terms of hardware cost, computation overhead and communication consumptions, and thus are suitable for energy-constrained wireless networks.
机译:在过去的几年中,无线自组织网络已使各种激动人心的民用,工业和军事应用成为可能。在许多类型的无线自组织网络中,由于制造低成本,低功率,多功能微粒的技术发展,无线传感器网络(WSN)受到欢迎。与传统的无线网络相比,位置感知通信是一种非常常见的通信模式,并且是WSN中许多应用程序所要求的。例如,在地理路由协议中,传感器需要知道其自身及其邻居的位置,才能将数据包正确转发到下一跳;感知应用的通信容易受到许多恶意攻击的影响,从被动窃听到主动欺骗,干扰,重播等。尽管一般来说,研究工作一直致力于保护通信安全,但是能源受限的网络的属性带来了新的技术挑战:首先,网络中的通信节点长期处于无人值守状态,而无需进行物理维护,这使他们的精力成为首要资源。其次,无线设备通常具有非常有限的硬件资源,例如内存,计算能力和通信范围。第三,节点的数量可能非常高。因此,利用为常规无线网络设计的现有安全算法是不可行的,创新机制的设计应能节省功耗,使用廉价的硬件和轻量协议,并适应网络的可扩展性。在研究中,我们旨在为能源受限的无线网络构建安全的位置感知通信系统,并以无线传感器网络为具体研究场景。特别是,我们确定了三个重要问题作为我们的研究目标:(1)为存在虫洞攻击和污染攻击的传感器提供正确的位置估计;(2)根据验证准确性的特定应用要求检测位置异常;以及(( 3)当使用网络编码多播位置信息时,防止信息泄漏给窃听者。我们的研究贡献如下:首先,我们提出了两种方案来提高节点位置信息的可用性和准确性。然后,我们研究监视和检测技术,并提出了三种轻量级方案来检测位置异常。最后,我们提出了两种可以有效防止信息泄露给窃听者的网络编码方案。仿真结果证明了我们的方案在增强系统安全性方面的有效性。与以前的工作相比,我们的方案在硬件成本,计算开销和通信消耗方面更轻便,因此适用于能量受限的无线网络。

著录项

  • 作者

    Wei, Yawen.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Computer.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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