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Multi-Layer Traffic Engineering Experiments in MPLS/GMPLS Networks

机译:MPLS / GMPLS网络中的多层流量工程实验

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This paper presents multi-layer IP optical traffic engineering experimental results using our developed IP optical Traffic Engineering (TE) Server, which performs traffic control in corporation with IP routes and optical cross-connects (OXCs) in Multi-Protocol Label Switching (MPLS) and Generalized MPLS (GMPLS) networks. Multi-layer TE can optimize network resource utilization considering all layers, rather than performing optimization independently for each layer. IP routers and OXCs are managed and operated by the IP optical TE server considering the network resources of both layers. The IP optical TE server computes path routers across different layers and controls them upon request from users and operators. The IP optical TE server dynamically reconfigures an IP network topology that consists of several optical paths in response to traffic demand fluctuations and network failures. The IP optical TE server dynamically reconfigures an IP network topology that consists of several optical paths in response to traffic demand fluctuations and network failures. We successfully performed experiments multi-layer TE.
机译:本文介绍了使用我们开发的IP光学交通工程(TE)服务器的多层IP光学交通工程实验结果,在多协议标签交换(MPLS)中使用IP路线和光交叉连接(OXC)在公司中执行流量控制(MPLS)和广义的MPLS(GMPLS)网络。多层TE可以考虑所有层的网络资源利用率,而不是针对每层独立执行优化。 IP光学TE服务器考虑两层的网络资源,管理和操作IP路由器和oxc。 IP光TE服务器在不同层上计算路径路由器,并根据用户和运算符的要求来控制它们。 IP光学TE服务器动态重新配置IP网络拓扑,该拓扑包括响应于业务需求波动和网络故障的多个光路组成。 IP光学TE服务器动态重新配置IP网络拓扑,该拓扑包括响应于业务需求波动和网络故障的多个光路组成。我们成功地执行了实验多层TE。

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