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Delay-Bandwidth-Aware Metric Abstraction Schemes for OIF E-NNI Multidomain Traffic Engineering

机译:用于OIF E-NNI多域流量工程的延迟带宽感知度量抽象方案

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摘要

Multidomain traffic engineering (TE) has the potential not only of guaranteeing the quality of service (QoS) to connections spanning multiple domains but also of effectively utilizing intradomain resources. The hierarchical Optical Internetworking Forum (OIF) External Network-to-Network Interface (E-NNI) control plane platform has emerged as a promising candidate aiming at guaranteeing multidomain QoS provisioning. Recent efforts have been made to extend OIF E-NNI in the multicarrier scenario. However, open issues such as confidentiality, the choice of TE metric, the routing controller (RC) architecture, the path computation method, and the abstraction schemes responsible for selecting the appropriate value of the TE metric to be announced have not been addressed yet. In this study, what we believe to be a novel RC architecture integrating the path computation element (PCE) is proposed to enable the efficient provisioning of end-to-end QoS-guaranteed services. The key role of the TE metric is analyzed and discussed, together with different TE metric abstraction schemes. The end-to-end delay is here considered as the most suitable candidate and a novel family of such schemes, named delay-bandwidth aware (DBA), are proposed and evaluated by means of simulations. Results show the ability of such schemes to globally preserve control plane stability and network resource utilization while advertising a high service level.
机译:多域流量工程(TE)不仅具有保证跨多个域的连接的服务质量(QoS)的潜力,而且还具有有效利用域内资源的潜力。分层光学互联网络论坛(OIF)外部网络到网络接口(E-NNI)控制平面平台已成为有希望的候选者,旨在保证多域QoS的提供。最近做出了努力以在多载波情况下扩展OIF E-NNI。但是,尚未解决诸如保密性,TE度量的选择,路由控制器(RC)体系结构,路径计算方法以及负责选择要宣布的TE度量的适当值的抽象方案之类的未解决问题。在这项研究中,我们认为是一种集成了路径计算元素(PCE)的新颖RC体系结构,可以有效地提供端到端QoS保证的服务。分析并讨论了TE指标的关键作用,以及不同的TE指标抽象方案。端到端延迟在这里被认为是最合适的候选者,并且提出了一种新的此类方案,称为延迟带宽感知(DBA),并通过仿真对其进行了评估。结果表明,这种方案具有在保持较高服务水平的同时全局保持控制平面稳定性和网络资源利用率的能力。

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