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An Evolutionary Approach to End-to-End Addressing and Routing in all-Ethernet Wide-Area Networks

机译:全以太网广域网中端到端寻址和路由的进化方法

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While the introduction of new Ethernet-based wide-area solutions, such as provider-backbone bridging traffic engineering-PBB-TE, paves a way for Ethernet to become a carrier class service, it is restricted to the metro area and hence unable to provision global end-to-end communication. In this paper, we propose a new scheme for all-Ethernet wide area networking that involves a unique addressing and routing mechanism, and leads to a scalable, hierarchical and service-oriented transport network architecture. The scalability is achieved by means of abstraction of any irregular physical topology into a regular logical topology, based on the concept of binary trees. The regular logical topology is represented with logical 1×2 Ethernet switches as the fundamental building blocks which allow switching using a unique binary addresses in a simple and automated fashion. We propose an evolutionary architecture to provide end-to-end Ethernet routes using binary addresses embedded in stacked VLAN tags on native Ethernet frames, in line with the emerging standards. The results show that a significant simplification of wide-area internetworking can be achieved, while supporting carrier-grade network performance with all-Ethernet features.
机译:虽然推出了基于新的以太网的广域解决方案,例如提供的提供商 - 骨干桥接交通工程 - PBB-TE,但为以太网铺平了以太网成为运营商级服务,它仅限于地铁区域,因此无法提供全球端到端沟通。在本文中,我们为全以太网广域网组提出了一种涉及唯一寻址和路由机制的新方案,并导致可扩展,分层和面向服务的传输网络架构。基于二元树的概念,通过将任何不规则的物理拓扑抽象成常规逻辑拓扑的抽象来实现可扩展性。常规逻辑拓扑结构用逻辑1×2以太网交换机表示为基本构建块,允许以简单和自动的方式使用唯一的二进制地址切换。我们提出了一种进化架构,提供使用嵌入在本机以太网帧上的堆叠VLAN标签中的二进制地址的端到端以太网路由,符合新兴标准。结果表明,可以实现广域互联网络的显着简化,同时支持具有全以太网特征的运营商级网络性能。

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