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A Fault-Tolerant MPLS-Based Control and Communication Network for the Lucent LambdaRouter

机译:朗讯LambdaRouter的基于MPLS的容错控制和通信网络

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Recently, the importance of out-of-band signaling has been realized for next-generation intelligent optical transport networks (OTNs). This next-generation OTN will be capable of providing services like real-time point-and-click provisioning of optical channels, automatic protection and restoration, network topology auto-discovery, and bandwidth management. However, for successful deployment and usage of these services, reliability of the out-of-band signaling network, referred to as the control and communication network (CCN), is critical. Specifically, it is desired that the signaling network transparently recover from any single failure events and continue providing communication between OTN nodes. In this paper, we propose a fault-tolerant, scalable, and cost-effective architecture for IP-based control plane of next-generation OTNs. The architecture is based on multiprotocol label switching (MPLS) protocols. The essence is to provide diverse paths in the network so that any failure in the OTN, as well as the control network, can be recovered transparently. These diverse paths employ a packet dual-feed and select mechanism for fast recovery from failures. The architecture requires diverse paths between the neighboring OTN nodes, instead of all-pair of nodes, enabling the control plane to seamlessly scale with the size of the OTN network. Moreover, the architecture allows the control plane topology to be independent of the OTN topology. This gives operators considerable flexibility in the design of the CCN in a cost-effective manner by using virtual private networks (VPNs) through public data networks, or by avoiding unnecessary OTN links. We also present an implementation of the proposed architecture that will be used as the highly reliable IP-based CCN in OTNs consisting of the Lucent LambdaRouter, an optical cross-connect product. Although in this paper the architecture is discussed in the context of providing a highly reliable IP-centric CCN for optical cross-connect-based (OXC-based) OTNs, it can be extended to a general purpose fault-tolerant CCN for any next-generation OTN.
机译:最近,对于下一代智能光传输网络(OTN),已经意识到了带外信令的重要性。下一代OTN将能够提供服务,例如光通道的实时点击配置,自动保护和恢复,网络拓扑自动发现以及带宽管理。但是,对于成功部署和使用这些服务,带外信令网络(称为控制和通信网络(CCN))的可靠性至关重要。特别地,期望信令网络从任何单个故障事件透明地恢复并且继续提供OTN节点之间的通信。在本文中,我们为下一代OTN的基于IP的控制平面提出了一种容错,可扩展且经济高效的体系结构。该体系结构基于多协议标签交换(MPLS)协议。实质是在网络中提供各种路径,以便OTN和控制网络中的任何故障都可以透明地恢复。这些不同的路径采用数据包双馈和选择机制从故障中快速恢复。该体系结构需要相邻OTN节点之间的路径(而不是所有节点对)具有不同的路径,从而使控制平面能够根据OTN网络的大小无缝扩展。此外,该体系结构允许控制平面拓扑独立于OTN拓扑。通过使用通过公共数据网络的虚拟专用网络(VPN)或避免不必要的OTN链接,运营商可以以经济高效的方式在CCN的设计中拥有极大的灵活性。我们还将介绍拟议架构的实现,该架构将用作由光学交叉连接产品朗讯LambdaRouter组成的OTN中高度可靠的基于IP的CCN。尽管在本文中讨论了该体系结构,但为基于光交叉连接(基于OXC的OTN)提供了高度可靠的以IP为中心的CCN,但可以将其扩展为通用的容错CCN,以用于任何下一个OTN一代。

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