A distributed routing algorithm based on available multi-nexthop in IP networks

Li-an Guan, Binqiang Wang, Xuan-yong Zhu, Dan Li
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Abstract

Traditional routing algorithms have many drawbacks such as worse resource utilization and stability. Present investigations focus on how to mitigate them in traditional algorithms rather than design a new algorithm to terminate them. In this paper, a novel distributed routing algorithm based on available multi-nexthop is proposed. This is different from traditional single-nexthop schemes. The nodes are orderly planned (assign different heights to different nodes based on some node) by improved breadth-first search algorithm(IBFS). Then, the network topology form a directed acyclic graph based on one destination node and other nodes can forward packets to it by available multi-nexthop which is derived from different heights. Simulation results show that the proposed algorithm has low computation complexity and makes network traffic tend to equilibrium due to the reduction of the traffic fluctuation in links. So the algorithm has a high resource utilization rate and can mitigate network congestions greatly.
IP网络中基于可用多下一跳的分布式路由算法
传统的路由算法存在资源利用率差、稳定性差等缺点。目前的研究主要集中在如何在传统算法中减轻它们,而不是设计一种新的算法来终止它们。提出了一种基于可用多下一跳的分布式路由算法。这与传统的单下一跳方案不同。采用改进的宽度优先搜索算法(IBFS)对节点进行有序规划(基于某些节点为不同节点分配不同高度)。然后,网络拓扑以一个目的节点为基础形成一个有向无环图,其他节点可以通过不同高度衍生的可用多下一跳向其转发数据包。仿真结果表明,该算法具有较低的计算复杂度,并且由于减少了链路上的流量波动,使网络流量趋于均衡。因此,该算法具有较高的资源利用率,可以有效地缓解网络拥塞。
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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