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An enhanced connectivity aware routing protocol for vehicular ad hoc networks

机译:车载ad hoc网络的增强的连通性感知路由协议

摘要

Vehicular Ad Hoc Network (VANET) is a self organized and self maintained communication network that is spontaneously and wirelessly formed by moving vehicles to provide safety, entertainment and information to its users. To tap these benefits, efficient and reliable routing protocols are needed. Designing routing protocol in VANET is challenging as the result of high vehicles’ mobility that result in frequent network disconnections. This is why existing routing protocols include route error handling to cater for the disconnection problem. Most of these solutions are variations of keep and carry strategy with or without a feedback mechanism to the source node. These strategies are sometime unnecessarily prolong the packet delivery and worst even if they failed, a new path discovery process is re-launched and that create more control overhead that waste the useful bandwidth. Even with Preferred Group Broadcast re-initiating route request creates additional control overhead. In this research, an Enhanced Connectivity aware routing (ECAR) protocol is proposed. The protocol utilizes an alternative backup route anytime the primary route to destination fails. It also uses control broadcast to further reduce the number of broadcasts needed to find routes to destination by allowing only the furthest node that receives a route request packet to rebroadcast it further in the network. NS2 simulation experimental results show that the performance of ECAR protocol outperformed the original connectivity aware routing (CAR) protocol by reducing the average packet delay by 28%, control overheads by 27% and increased the packet delivery ratio by 22%.
机译:车载自组织网络(VANET)是一种自组织和自维护的通信网络,通过移动车辆自发和无线形成,以向其用户提供安全,娱乐和信息。为了利用这些好处,需要有效而可靠的路由协议。由于车辆的高度机动性导致频繁的网络断开,因此在VANET中设计路由协议具有挑战性。这就是为什么现有的路由协议包括路由错误处理以解决断开连接问题的原因。这些解决方案中的大多数都是带有或不带有对源节点的反馈机制的保留和携带策略的变体。这些策略有时会不必要地延长数据包的传输时间,即使失败,也最糟糕的是,重新启动了新的路径发现过程,这会产生更多的控制开销,从而浪费了有用的带宽。即使使用首选组广播,重新发起路由请求也会产生额外的控制开销。在这项研究中,提出了一种增强连接感知路由(ECAR)协议。每当到达目标的主路由发生故障时,该协议就会使用备用备份路由。它还通过仅允许接收路由请求数据包的最远节点在网络中进一步重播,来使用控制广播来进一步减少查找到目的地的路由所需的广播数。 NS2仿真实验结果表明,ECAR协议的性能通过将平均数据包延迟减少了28%,控制开销减少了27%并将数据包传送率提高了22%,从而优于原始的连接感知路由(CAR)协议。

著录项

  • 作者

    Maidorawa Ahmadu;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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