arrow
返回

Robust network design for IP/optical backbones

delete2019-08-01
delete16
delete
OA
AI
J
Jennifer Gossels *
G
Gagan L. Choudhury
J
Jennifer Rexford
DOI:10.1364/JOCN.11.000478delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
Recently, Internet service providers (ISPs) have gained increased flexibility in how they configure their in-ground optical fiber into an IP network. This greater control has been made possible by improvements in optical switching technology, along with advances in software control. Traditionally, at network design time, each IP link was assigned a fixed optical path and bandwidth. Now modern colorless and directionless reconfigurable optical add/drop multiplexers (CD ROADMs) allow a remote controller to remap the IP topology to the optical underlay on the fly. Consequently, ISPs face new opportunities and challenges in the design and operation of their backbone networks [IEEE Commun. Mag. 54, 129 (2016); presentation at the International Conference on Computing, Networking, and Communications, 2017; J. Opt. Commun. Netw. 10, D52 (2018); Optical Fiber Communication Conference and Exposition (2018), paper Tu3H.2]. Specifically, ISPs must determine how best to design their networks to take advantage of new capabilities; they need an automated way to generate the least expensive network design that still delivers all offered traffic, even in the presence of equipment failures. This problem is difficult because of the physical constraints governing the placement of optical regenerators, a piece of optical equipment necessary to maintain an optical signal over long stretches of fiber. As a solution, we present an integer linear program (ILP) that does three specific things: It solves the equipment placement problem in network design; determines the optimal mapping of IP links to the optical infrastructure for any given failure scenario; and determines how best to route the offered traffic over the IP topology. To scale to larger networks, we also describe an efficient heuristic that finds nearly optimal network designs in a fraction of the time. Further, in our experiments our ILP offers cost savings of up to 29% compared to traditional network design techniques. (c) 2019 Optical Society of America
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Journal of Optical Communications and Networking 封面图
Journal of Optical Communications and Networking
IF:
4.3
论文数:
2.2K
被引数:
3.8K

机构

P
Princeton University
学者数:
2.1W
论文数: 2.3W
被引数: 5.1W
A
AT&T
学者数:
811
论文数: 717
被引数: 460
引用论文

引用论文

err分享
err收藏
Constraint Routing and Regenerator Site Concentration in ROADM Networks
err2013-10-23
err13
PREAI
errBathula, Balagangadhar G.; Sinha, Rakesh K.; Chiu, Angela L.; Feuer, Mark D.; Li, Guangzhi; Woodward, Sheryl L.; Zhang, Weiyi; Doverspike, Robert; Magill, Peter; Bergman, Keren
err分享
err收藏
Are Firms in "Boring" Industries Worth Less?
err
IF0
err2015-01-01
err0
errOAAI
errJia Chen; Kewei Hou; René Stulz
err分享
err收藏
Architectures and Protocols for Capacity Efficient, Highly Dynamic and Highly Resilient Core Networks [Invited]容量高效、高度动态和高弹性的核心网络架构和协议 [邀请]
err2011-12-07
err90
PREAI
errChiu, Angela L.; Choudhury, Gagan; Clapp, George; Doverspike, Robert; Feuer, Mark; Gannett, Joel W.; Jackel, Janet; Kim, Gi Tae; Klincewicz, John G.; Kwon, Taek Jin; Li, Guangzhi; Magill, Peter; Simmons, Jane M.; Skoog, Ronald A.; Strand, John; Von Lehmen, Ann; Wilson, Brian J.; Woodward, Sheryl L.; Xu, Dahai
err分享
err收藏
Multi-Layer Capacity Planning for IP-Optical Networks
err2014-01-01
err65
PREAI
errGerstel, Ori; Filsfils, Clarence; Telkamp, Thomas; Gunkel, Matthias; Horneffer, Martin; Lopez, Victor; Mayoral, Arturo
err分享
err收藏
err分享
err收藏
Evolving to an SDN-Enabled ISP Backbone: Key Technologies and Applications
err2016-10-01
err17
PREAI
errBirk, Martin; Choudhury, Gagan; Cortez, Bruce; Goddard, Alvin; Padi, Narayan; Raghuram, Aswatnarayan; Tse, Kathy; Tse, Simon; Wallace, Andrew; Xi, Kang
err分享
err收藏
没有更多内容