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Load-balancing and secure routing for wireless mobile ad hoc networks.

机译:无线移动自组织网络的负载平衡和安全路由。

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摘要

A mobile ad hoc network is a collection of mobile nodes dynamically forming a multi-hop wireless network. Due to the limited transmission range of wireless interface, a routing protocol is needed to enable communication between mobile nodes. The first part of our work focuses on the load-balancing routing protocol in mobile ad hoc wireless access network in which mobile nodes can access the Internet via one or more stationary gateway nodes. Although on-demand routing schemes are appealing with low routing overhead in bandwidth restricted networks, their routing control overhead increases exponentially with node density in a given geographic area. To control the overhead of on-demand routing without sacrificing performance, we present a novel extension of the Ad hoc On-demand Distance Vector (AODV) routing protocol, called LB-AODV, which incorporates the concept of load-balancing (LB). Results show that LB-AODV outperforms other routing schemes as traffic increases. We compare the performance of our proposed LB-AODV protocol with both the original AODV and gossip-based routing protocols in different mobility and traffic scenarios. Simulation results show that LB-AODV delivers more data packets to the gateway and decreases the end-to-end delay of packets delivered by reducing the transmissions of routing control messages by 50% or more. In scenarios with traffic congestion, LB-AODV outperforms AODV and GOSSIP1 routing protocols.;Another important issue in ad hoc routing protocol is security. In hostile environments, it is crucial to provide a secure communication infrastructure between mobile nodes. We investigate the severe threats of routing table tampering attack, where attackers can modify the information stored in a mobile host's routing table. To guard against this attack, we propose the use of either the Tamper Resistant Module (TRM) or the Secure Table Entry Protection (STEP) mechanisms. STEP can provide the authentication for both the destination sequence number and hop-count fields in the routing table entry. We analyze security threats against AODV routing protocol and propose Secure AODV (SeAODV), a secure routing extension to the original AODV We also propose a Secure Data Forwarding (SDF) scheme based on SeAODV for secure transmissions of data packets over the wireless links. Simulation results showed that STEP continues to maintain a high packet delivery fraction and a small end-to-end delay at the expense of slightly higher route acquisition latency and control overhead in route discovery. In the presence of either data packet dropping or routing table tampering attacks, SeAODV continues to maintain a high packet delivery fraction and a small end-to-end delay. (Abstract shortened by UMI.)
机译:移动自组织网络是动态形成多跳无线网络的移动节点的集合。由于无线接口的传输范围有限,因此需要路由协议来实现移动节点之间的通信。我们的第一部分工作集中在移动自组织无线访问网络中的负载平衡路由协议上,其中移动节点可以通过一个或多个固定网关节点访问Internet。尽管按需路由方案在带宽受限的网络中以较低的路由开销吸引人,但它们的路由控制开销却随给定地理区域中的节点密度呈指数增长。为了在不牺牲性能的情况下控制按需路由的开销,我们提出了称为LB-AODV的Ad hoc按需距离矢量(AODV)路由协议的新扩展,该协议结合了负载平衡(LB)的概念。结果表明,随着流量的增加,LB-AODV的性能优于其他路由方案。我们在不同的移动性和流量情况下,将我们提出的LB-AODV协议与原始AODV和基于八卦的路由协议的性能进行了比较。仿真结果表明,LB-AODV通过将路由控制消息的传输减少了50%或更多,从而将更多的数据包传递到网关,并减少了所传递数据包的端到端延迟。在流量拥塞的情况下,LB-AODV的性能优于AODV和GOSSIP1路由协议。;临时路由协议中的另一个重要问题是安全性。在敌对环境中,在移动节点之间提供安全的通信基础结构至关重要。我们调查了路由表篡改攻击的严重威胁,攻击者可以在其中修改移动主机路由表中存储的信息。为了防止这种攻击,我们建议使用防篡改模块(TRM)或安全表条目保护(STEP)机制。 STEP可以为路由表条目中的目标序列号和跳数字段提供身份验证。我们分析了针对AODV路由协议的安全威胁,并提出了安全AODV(SeAODV),这是对原始AODV的安全路由扩展。我们还提出了一种基于SeAODV的安全数据转发(SDF)方案,用于在无线链路上安全传输数据包。仿真结果表明,STEP继续保持较高的数据包传递比例和较小的端到端延迟,但以略高的路由获取延迟和路由发现中的控制开销为代价。在存在数据包丢弃或路由表篡改攻击的情况下,SeAODV继续保持较高的数据包传递比例和较小的端到端延迟。 (摘要由UMI缩短。)

著录项

  • 作者

    Song, Joo-Han.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 143 p.
  • 总页数 143
  • 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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