Traffic management and network planning for optical IP over WDM networks

M. Gagnaire
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引用次数: 1

Abstract

Several aspects have motivated the current interest of the Internet community for optical technologies. The first of these motivations is related to the necessity of a higher network capacity facing the rapid growth of the Internet traffic. Dense wavelength division multiplexing (DWDM) is today a simple and cost effective solution to this difficulty. The second motivation refers to the necessity of introducing quality of service (QoS) in IP networks in order to facilitate voice, video and data services integration. Multi-Protocol Label Switching (MPLS) is today considered as the most promising technique to introduce such QoS. The feasibility of optical switches and of optical routers has been demonstrated in various ACTS research programs. Thanks to these advancements, an extension of MPLS to optical switching fabrics is under study within various standardization bodies under the name of Generalized MPLS (GMPLS). In a first step, this paper aims at presenting the various approaches considered by the standardization bodies for new generation IP networks and optical networks. The overlay and peer-to-peer approaches to combine these two types of technologies are commented on, a particular interest being dedicated to the ITU-T vision with the optical transport network (OTN) definition. The rest of the paper focuses on the very open problems of traffic management and network planning in all-optical IP networks.
WDM光IP网络的流量管理与网络规划
有几个方面激发了当前互联网社区对光学技术的兴趣。第一个动机与面对Internet流量的快速增长需要更高的网络容量有关。密集波分复用(DWDM)是当今解决这一难题的一种简单且经济有效的解决方案。第二个动机是指在IP网络中引入服务质量(QoS)以促进语音、视频和数据业务集成的必要性。目前,多协议标签交换(MPLS)被认为是引入这种QoS的最有前途的技术。光交换机和光路由器的可行性已经在各种ACTS研究项目中得到了验证。由于这些进步,在通用MPLS (GMPLS)的名义下,各种标准化机构正在研究将MPLS扩展到光交换结构。在第一步中,本文旨在介绍标准化机构为新一代IP网络和光网络考虑的各种方法。对结合这两种技术的覆盖和点对点方法进行了评论,并特别关注了ITU-T愿景和光传输网络(OTN)定义。本文的其余部分主要关注全光IP网络中非常开放的流量管理和网络规划问题。
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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