Assessing IP vs optical restoration using the open-source Net2Plan tool

Jose-Luis Izquierdo Zaragoza, P. Pavón-Mariño
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引用次数: 3

Abstract

Economic sustainability of the ever-increasing traffic requirements is built on the cost reduction of IP-over-WDM backbone networks. These networks are composed of a set of IP routers connected via all-optical circuits (or lightpaths), bypassing intermediate nodes, thanks to reconfigurable optical equipment. Today, traffic survivability is ensured by over-dimensioning the IP layer and using some IP/MPLS fast convergence/reroute mechanism, without making use of the reconfigurability of the optical layer. In this paper, we provide algorithms to dimension an IP-over-WDM network under two different resilience schemes: IP restoration and optical-followed-by-IP restoration. In both cases, the IP routing is controlled by an OSPF-like algorithm. In the optical-followed-by-IP restoration, OSPF reactions to failures are delayed by appropriately setting the OSPF hold-off timer, giving time to lightpath restoration attempts to be completed. We evaluate the performance, in terms of bandwidth requirements and traffic survivability, of these two resilience schemes. Our tests show that optical-followed-by-IP restoration is a cost-efficient alternative to IP restoration, still improving traffic survivability in most cases, without any degree of over-dimensioning. Results were obtained using the open-source Net2Plan tool, and source code is available on the website.
使用开源Net2Plan工具评估IP与光学恢复
不断增长的流量需求的经济可持续性建立在IP-over-WDM骨干网成本降低的基础上。这些网络由一组IP路由器组成,通过全光电路(或光路)连接,绕过中间节点,这要归功于可重构的光学设备。目前,流量的生存能力是通过IP层的超大尺寸和使用一些IP/MPLS快速收敛/重路由机制来保证的,而没有利用光层的可重构性。在本文中,我们提供了两种不同弹性方案下的IP-over- wdm网络的维数算法:IP恢复和光随IP恢复。在这两种情况下,IP路由都由类似ospf的算法控制。在ip光路恢复中,通过适当设置OSPF延迟定时器,延迟OSPF对失败的反应,给光路恢复尝试完成的时间。我们从带宽需求和流量生存性方面评估了这两种弹性方案的性能。我们的测试表明,光学跟踪IP恢复是IP恢复的一种经济有效的替代方案,在大多数情况下仍然可以提高流量的生存能力,而不会出现任何程度的过维化。结果是使用开源Net2Plan工具获得的,源代码可在网站上获得。
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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