A fast and seamless route repairing algorithm for ad-hoc networks

Shih-Chang Huang
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Abstract

AODV is one of the most widely studied routing protocols for the networks, which have high topology variance. It can quickly build and repair the route from source to destination to recover the broken connection. In this paper, we propose a fast and seamless route repairing (FSRR) algorithm to improve the route recreation procedure in AODV. To seamlessly repairing the route, the FSRR monitors the links on the route and triggers the repairing procedure before the links break off. The major difference between AODV and FSRR is that both source and destination broadcast the RREQ packet simultaneously to repair the route. This bi-direction broadcasting mechanism can reduce the route repairing time. In addition, we also design the redundant RREQ blocking mechanism to moderate the route overhead. Simulation results show that the FSRR cannot only save route repairing time in AODV more than 20% but also decreases about 10%~20% nodes, which participate in broadcasting the RREQ packets by retaining the same route length as the AODV.
一种快速无缝的ad-hoc网络路由修复算法
AODV是目前研究最广泛的网络路由协议之一,具有较高的拓扑变异。它可以快速建立和修复从源到目的的路由,以恢复中断的连接。本文提出了一种快速无缝路由修复(FSRR)算法,以改进AODV的路由重建过程。为了无缝修复路由,FSRR监控路由上的链路,并在链路断开之前触发修复过程。AODV和FSRR的主要区别是源端和目的端同时广播RREQ报文来修复路由。这种双向广播机制可以减少路由修复时间。此外,我们还设计了冗余RREQ阻塞机制,以缓和路由开销。仿真结果表明,FSRR不仅使AODV的路由修复时间节省了20%以上,而且使参与广播RREQ报文的节点数量减少了10%~20%,保持了与AODV相同的路由长度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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