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Fast setup of end-to-end paths for bandwidth constrained applications in an IP/MPLS-ATM integrated environment

机译:在IP / MPLS-ATM集成环境中为带宽受限的应用快速设置端到端路径

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Transport networks are currently being moved towards a model of high performance Internet Protocol/Multiprotocol Label Switching (IP/MPLS) routers interconnected through intelligent core networks. Currently, Asynchronous Transfer Mode (ATM) technology has been widely deployed in several network backbones along with the Private Network-to-Network Interface (PNNI) protocols as the control plane. In order to cope with the increasing Internet traffic demands in the current context, fast setup of end-to-end paths with the required Quality of Service (QoS) is necessary. This paper analyzes the case of two IP/MPLS networks interconnected through an ATM core network, assuming MPLS as the mechanism to provide Traffic Engineering in the IP networks, and a PNNI-based control plane in the core network. This paper aims to define a mechanism needed to set up a fast end-to-end QoS Label Switched Path (LSP) between two Label Switched Routers (LSRs) belonging to different IP/MPLS domains. First, the fast end-to-end setup is achieved by modifying the network backbone control plane. Second, two different aggregation schemes are proposed to summarize the QoS network state information to be transported through the ATM core network. Therefore, both the efficient aggregation schemes and the fast mechanism allow source routing to set up a path faster than the existing methods and to reduce the blocking probability using a summary of the available resource information.
机译:当前,传输网络正朝着通过智能核心网络互连的高性能Internet协议/多协议标签交换(IP / MPLS)路由器的模型发展。当前,异步传输模式(ATM)技术已与专用网络到网络接口(PNNI)协议一起作为控制平面广泛部署在几个网络主干中。为了应对当前上下文中不断增长的Internet流量需求,必须快速设置具有所需服务质量(QoS)的端到端路径。本文分析了通过ATM核心网络互连的两个IP / MPLS网络的情况,并假设MPLS是在IP网络中提供流量工程的机制,而在核心网络中基于PNNI的控制平面。本文旨在定义一种在属于不同IP / MPLS域的两个标签交换路由器(LSR)之间建立快速端到端QoS标签交换路径(LSP)所需的机制。首先,通过修改网络主干控制平面来实现快速的端到端设置。其次,提出了两种不同的聚合方案来总结要通过ATM核心网传输的QoS网络状态信息。因此,有效的聚合方案和快速机制都允许源路由比现有方法更快地建立路径,并使用可用资源信息的摘要来降低阻塞概率。

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