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Efficient and secure network services in wireless sensor networks.

机译:无线传感器网络中的高效,安全的网络服务。

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摘要

Wireless sensor networks (WSNs) have been deployed for environment monitoring and surveillance. A message delivery service is one of the most fundamental services for WSNs, thus making its efficiency and effectiveness important. A widely-adopted protocol for message delivery in WSNs is a geographic forward routing (GFR), in which messages are greedily forwarded to their destinations. In this thesis, we develop network services complementary to the existing GFR for efficient and secure message delivery in WSNs.We first develop a distributed location service protocol (DLSP) for message delivery to mobile nodes. Since GFR represents destinations of messages with destinations' geographic locations, the knowledge of location of mobile nodes is necessary to ensure correct message delivery. In DLSP, mobile nodes select some sensor nodes as their location servers, and publish the mobiles' location information to the location servers. Sensor nodes contact those location servers to retrieve the current location of mobile nodes when needed. DLSP provides systematic methods for mobile nodes to select location servers and publish their location to those servers, and for sensor nodes to query mobiles' location.We then design an algorithm called TRAVERSE for hole boundary detection and geographic forward routing with hole avoidance (GFRHA) for efficient message routing. TRAVERSE identifies boundaries of holes, i.e., areas without any functioning sensor node. GFRHA then utilizes the identified hole information to route messages around holes while being forwarded before they encounter holes. This way, the message path lengths, and subsequently the message delay and energy consumption, can be significantly reduced, depending on hole shapes and source and destination locations.We also develop attack-resilient collaborative message authentication (ARCMA) for message delivery. ARCMA is designed to tolerate node-capture attacks, in which attackers obtain valid keys by compromising physically-exposed sensor nodes, and use the keys to generate forged messages. To defend against such attacks, in ARCMA, messages are collaboratively authenticated by a set of sensor nodes rather than by one node. The security of ARCMA does not degrade unless attackers simultaneously compromise more than a certain number of sensor nodes.
机译:无线传感器网络(WSN)已部署用于环境监视和监视。消息传递服务是WSN的最基本服务之一,因此使其效率和有效性变得很重要。 WSN中用于消息传递的一种广泛采用的协议是地理转发路由(GFR),在该协议中,消息被贪婪地转发到其目的地。在本文中,我们开发了与现有GFR互补的网络服务,以在WSN中高效,安全地传递消息。首先,我们开发了一种分布式位置服务协议(DLSP),用于将消息传递到移动节点。由于GFR用目的地的地理位置来表示邮件的目的地,因此必须了解移动节点的位置,以确保正确的邮件传递。在DLSP中,移动节点选择一些传感器节点作为其位置服务器,然后将移动设备的位置信息发布到位置服务器。传感器节点在需要时与这些位置服务器联系以检索移动节点的当前位置。 DLSP为移动节点选择位置服务器并将其位置发布到这些服务器提供了系统的方法,并为传感器节点查询移动设备的位置提供了系统的方法。然后,我们设计了一种称为TRAVERSE的算法,用于孔边界检测和带孔规避的地理前向路由(GFRHA)用于高效的消息路由。遍历可识别孔的边界,即没有任何有效传感器节点的区域。 GFRHA然后利用识别出的洞信息在洞周围路由消息,同时在它们遇到洞之前进行转发。这样,可以根据孔的形状以及源和目的地的位置,显着减少消息路径的长度,进而减少消息的延迟和能耗。我们还开发了可抵抗攻击的协作消息身份验证(ARCMA),用于消息传递。 ARCMA旨在容忍节点捕获攻击,其中攻击者通过破坏物理暴露的传感器节点来获取有效密钥,并使用密钥生成伪造的消息。为了抵御此类攻击,在ARCMA中,消息是由一组传感器节点而不是一个节点进行协作身份验证的。除非攻击者同时危害多个传感器节点,否则ARCMA的安全不会降低。

著录项

  • 作者

    Cho, Min-gyu.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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