2009Optical Fiber & Electric Cable and Their ApplicationsRequires access

The Simulation of Traffic Engineering Based on MPLS

Qiang Sun

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Abstract

The mature and extension of MPLS will drive the realization of intelligent network and next generation optical network.Based on the analysis of traffic engineering and MPLS architecture the advantages of using MPLS to realize traffic engineering are discussed.Also the actual examples of OSPF routing protocol and MPLS traffic engineering are designed utilizing network simulation 2(NS2) environment.The comparison and analysis of simulation results show that MPLS traffic engineering can effectively realize the load balance and resume mechanism, thereby enhancing the QoS of the network.

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What this paper is about

The mature and extension of MPLS will drive the realization of intelligent network and next generation optical network.Based on the analysis of traffic engineering and MPLS architecture the advantages of using MPLS to realize traffic engineering are discussed.Also the actual examples of OSPF routing protocol and MPLS traffic engineering are designed utilizing network simulation 2(NS2) environment.The comparison and analysis of simulation results show that MPLS traffic engineering can effectively realize the load balance and resume mechanism, thereby enhancing the QoS of the network.

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Available abstract

The mature and extension of MPLS will drive the realization of intelligent network and next generation optical network.Based on the analysis of traffic engineering and MPLS architecture the advantages of using MPLS to realize traffic engineering are discussed.Also the actual examples of OSPF routing protocol and MPLS traffic engineering are designed utilizing network simulation 2(NS2) environment.The comparison and analysis of simulation results show that MPLS traffic engineering can effectively realize the load balance and resume mechanism, thereby enhancing the QoS of the network.

Key concepts: Multiprotocol Label Switching, Traffic engineering, Computer network, Computer science, Label switching, Open Shortest Path First, Quality of service, Automatically switched optical network

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