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A practical multi-plane routing-based traffic engineering scheme in evolutionary convergent all-IP access networks

机译:演进的融合全IP接入网中基于实用多平面路由的流量工程方案

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With the expected surge in the global IP traffic, service providers would need to adapt accordingly to operate disruption and loss free networks supported with the developing IP infrastructure. With the disposal of the hierarchical network structure, radio access networks are moving towards a flat-IP architecture and novel topological set-ups in the backhaul. Hence, a routing paradigm that employs suitable Traffic Engineering (TE) techniques aligned with the developing nature of future access networks must be applied. In this paper, Multi-Plane Routing (MPR) that consolidates various aspects in all-IP infrastructure is remodelled in consistent with this development. We propose a MPR-based TE approach considering two different scenarios to reflect the evolution in the architectural design of access network structures under a realistic traffic scenario with a varying range of internal/external traffic. Accordingly, a practical performance evaluation testing the validity of the aforementioned scenarios is presented. Our simulation results demonstrate a better achieved performance under the flat-IP structure in addition to MPR-based methods' superiority over legacy OSPF/Invcap. Performance degradation is observed with the rise in the internal traffic distribution for the different scenarios studied. Moreover, a new optimization framework for the offline and online TE mechanisms of MPR have been proposed.
机译:随着全球IP流量的预期激增,服务提供商将需要做出相应调整,以运行由不断发展的IP基础架构支持的无中断和无损网络。随着分层网络结构的处置,无线电接入网络正朝着回程中的扁平IP架构和新颖的拓扑结构发展。因此,必须采用采用与未来接入网络的发展本质相适应的适当交通工程(TE)技术的路由范例。在本文中,与这种发展相一致的是,对在全IP基础架构中整合各个方面的多平面路由(MPR)进行了重新建模。我们提出了一种基于MPR的TE方法,其中考虑了两种不同的情况,以反映在实际流量情况下内部/外部流量范围不同的情况下,接入网络结构的体系结构设计的发展。相应地,提出了测试上述情况的有效性的实际性能评估。我们的仿真结果表明,除了基于MPR的方法相对于传统OSPF / Invcap的优越性以外,在Flat-IP结构下还可以获得更好的性能。对于所研究的不同场景,随着内部流量分布的增加,性能会下降。此外,已经提出了MPR的离线和在线TE机制的新的优化框架。

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