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Omnipresent Ethernet—Technology Choices for Future End-to-End Networking

机译:无所不在的以太网—未来端到端网络的技术选择

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We propose an all-Ethernet end-to-end communication framework for the access, metro and core networks called Omnipresent Ethernet (or OEthernet). The proposed hierarchy is based on two inherent assumptions: (1) present manner of interconnection in carrier networks from a graph theory perspective and (2) recent advances in Carrier Ethernet. The OEthernet approach makes good use of the advances of Ethernet from the LAN to the MAN and now to carrier networks, while inducing pragmatic traffic requirements for end-to-end communication. The OEthernet concept is a new end-to-end communication paradigm focused in particular to meet emerging service needs taking business requirements into consideration. The proposed solution is based on concepts of binary routing, source routing, logical topology abstraction and tagged connection oriented flow provisioning leading to a new communication hierarchy that facilitates end-to-end communication. This end-to-end solution uses Ethernet and its associated advances as an enabler technology. We define the advantages, the technological choices and the traffic assumptions for this end-to-end Ethernetworking hierarchy. Following which we postulate simple algorithms for converting an arbitrary network to one which facilitates source routing and binary routing-two concepts that are instructive in our solution. Subsequent to the conceptual explanation the engineering aspects of the implementation are detailed. In particular end-to-end communication using our solution, in the presence and absence of IP as a network layer is showcased. The solution is analyzed from a utilization and delay perspective. An optical implementation of the end-to-end OEthernet solution for enterprise networks is also proposed. Included is a new node architecture leading to a class of optical networking called O-BiS or Optical Bit-Switching. Comparison with existing approaches as well as positioning with respect to all-IP networks is then showcased. Triple Play servic-nes are simulated over our networking solution to validate our results.
机译:我们为接入,城域网和核心网提出了称为Omnipresent以太网(或OEthernet)的全以太网端到端通信框架。提出的层次结构基于两个固有的假设:(1)从图论的角度介绍运营商网络中的互连方式,以及(2)运营商以太网的最新进展。 OEthernet方法充分利用了以太网从LAN到MAN以及现在到运营商网络的进步,同时引发了端到端通信的务实流量需求。 OEthernet概念是一种新的端到端通信范例,特别关注满足业务需求的新兴服务需求。所提出的解决方案基于二进制路由,源路由,逻辑拓扑抽象和标记的面向连接的流供应的概念,从而导致了一种新的通信体系,该体系促进了端到端通信。该端到端解决方案将以太网及其相关的先进技术用作使能技术。我们定义了此端到端以太网工作层次结构的优势,技术选择和流量假设。接下来,我们提出了用于将任意网络转换为有助于源路由和二进制路由的简单算法的两种算法,它们在我们的解决方案中具有指导意义。在概念性解释之后,详细介绍了实现的工程方面。特别是展示了使用我们的解决方案进行的端到端通信,其中存在和不存在IP作为网络层。从利用率和延迟角度分析了该解决方案。还提出了用于企业网络的端到端OEthernet解决方案的光学实现。其中包括一个新的节点体系结构,该体系结构导致了称为O-BiS或光比特交换的一类光网络。然后展示了与现有方法的比较以及相对于全IP网络的定位。通过我们的网络解决方案模拟了三网融合服务,以验证我们的结果。

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