一种具有接入/边缘/核心分层结构的可靠ip网络设计算法

S. Chamberland
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引用次数: 6

摘要

在本文中,我们解决了具有三层(接入/边缘/核心)层次结构的可靠互联网协议(IP)网络的设计问题。这个问题包括选择在每个级别安装的路由器的数量和类型,选择在每个路由器上安装的端口类型,找到接入网、边缘网和核心网,选择链路类型和路由网络内的流量。使用最短路径计算路由,使用链路度量作为链路长度,例如开放最短路径优先(OSPF)路由协议,即IP网络中最广泛部署的域内路由协议。此外,在网络正常状态下以及在所有单边和核心链路故障情况下,保证每对客户端之间具有最小的信息速率(MIR)流量参数。为了快速找到网络解,提出了一种禁忌搜索算法。最后给出了数值结果并进行了分析。结果表明,该算法平均在最优解的3.26%范围内找到解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An efficient algorithm for designing reliable ip networks with an access/edge/core hierarchical structure
In this paper, we tackle the design problem of reliable internet protocol (IP) networks with a three-level (access/edge/core) hierarchical structure. This problem consists in selecting the number of routers and their types to install at each level, selecting the port types to install in each router, finding the access, edge and core networks, selecting the link types and routing the traffic within the network. The routes are computed using the shortest paths using link metrics as the lengths of the links such as for the open shortest path first (OSPF) routing protocol, i.e., the most widely deployed intra domain routing protocol for IP networks. Moreover, a minimum information rate (MIR) traffic parameter is guarantee between each pair of clients for the normal state of the network and for all single edge and core links failure scenarios. A tabu search algorithm is proposed to find network solutions rapidly. Finally, numerical results are presented and analyzed. The results show that the algorithm found solutions, on average, within 3.26% of the optimal solutions.
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