WDM加权网络中的生存性路由

Debasis Mandal, Satyajit Nath, Bivas Mitra
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引用次数: 4

摘要

在本文中,我们研究了遵循设计保护方法在任意物理拓扑上路由光路的问题,使虚拟拓扑即使在单个光纤链路故障后仍保持连接。这被称为生存性路由。已知这是一个np完全问题。为了解决这个问题,首先,我们证明了在网状网络中嵌入哈密顿电路是网状网络生存能力的必要条件。然后利用多项式时间算法生成哈密顿电路,即嵌入环虚拟拓扑,建立到环的光路。最后,我们设计了两种RWA算法来为网络中的其他请求分配光路,分别优先考虑波长和流量。我们分析了随机无向网络的数值结果,该网络具有随机正常流量需求,具有最大单跳和最小多跳保护流量、波长利用率、多跳数、缓冲区大小等性能指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Survivable Routing in WDM Weighted Networks
In this paper, we investigate the problem of routing lightpaths on an arbitrary physical topology following a Design Protection approach, such that virtual topology remains connected even after the failure of a single fiber link. This is called survivable routing. It is known to be an NP-complete problem. To address the problem, first, we have proved that embedded Hamiltonian circuit in a mesh network is a must for its survivability. Then using a polynomial time algorithm for generating Hamiltonian circuit i.e. embedded ring virtual topology, we establish lightpaths to the ring. Finally, we design two RWA algorithms to assign lightpaths to other requests in the network, giving priority to wavelength and traffic respectively. We analyze the numerical results obtained for random undirected networks with random normal traffic demands with performance metrics such as maximum one-hop and minimum multi-hop protected traffic, wavelength utilization, number of multi-hops, Buffer size etc.
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