虚拟寻址在传感器网络中高效容错路由中的优势

Abdalkarim Awad, Lei Shi, R. German, F. Dressler
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引用次数: 18

摘要

研究了虚拟寻址方案在传感器网络中实现高效容错路由的能力。特别是,我们提出了虚拟线协议(VCP),它使用了点对点网络中已知的技术,即分布式哈希表(dht)用于将传感器网络中的数据项与特定节点地址相关联。节点的地址由协议动态维护,形成一条虚拟线。VCP使用两种机制来查找到节点和相关数据项的路径:首先,它依赖于始终指向目的地的虚拟连线。此外,利用本地可用的邻域信息进行贪婪路由。仿真结果表明,VCP能够以非常低的开销找到接近可能最短路径的路径。VCP的路由性能明显优于其他自组织路由协议,如动态MANET按需路由(DYMO),与其他虚拟寻址方案类似,例如虚拟环路由(VRR)。然而,我们改进了VCP,以优化的方式处理频繁的节点故障。本文给出的结果概述了VCP处理此类情况的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advantages of virtual addressing for efficient and failure tolerant routing in sensor networks
We study the capabilities of virtual addressing schemes for efficient and failure tolerant routing in sensor networks. In particular, we present the Virtual Cord Protocol (VCP) that uses techniques known from peer-to-peer networks, i.e. Distributed Hash Tables (DHTs) are used to associate data items in sensor networks with particular node addresses. The addresses of nodes are dynamically maintained by the protocol to form a virtual cord. VCP uses two mechanisms for finding paths to nodes and associated data items: First, it relies on the virtual cord that always points towards the destination. Furthermore, locally available neighborhood information is exploited for greedy routing. Our simulation results show that VCP is able to find paths close to the possible shortest path with very low overhead. The routing performance of VCP, which clearly outperforms other ad hoc routing protocols such as Dynamic MANET On Demand (DYMO), is similar to other virtual addressing schemes, e.g. Virtual Ring Routing (VRR). However, we improved VCP to handle frequent node failures in an optimized way. The results presented in this paper outline the capabilities of VCP to handle such cases.
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