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SDN-based traffic engineering for improved resilience in integrated satellite-terrestrial backhaul networks

机译:基于SDN的流量工程,可提高集成卫星 - 地面回程网络的弹性

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Resilience and high availability are considered as essential requirements in 5G networks. To fullfil these requirements, the integration of a satellite component within mobile backhaul networks arises as a compelling proposition to provide backup connectivity to critical cell sites and divert traffic from congested areas so that a limited capacity in their terrestrial links could be supplemented during peak-time or even replaced in case of total/partial failure or maintenance. This is especially of interest for public protection and disaster relief (PPDR) communications in remote/rural areas that might require the fast deployment of nework capacity as well as in distressed areas where the terrestrial backhaul infrastructure might have suffered damages. This paper first describes an architectural framework that enables the integration and management of the satellite capacity as a constituent part of a Software Defined Networking (SDN)-based traffic engineered mobile backhaul network. Then, a SDN-based Traffic Engineering (TE) application is proposed to manage some amount of dynamically steerable satellite capacity provisioned for resilience purposes to maximize a network utility function under both failure and non-failure conditions in the terrestrial links. Numerical results are presented to assess the benefits of the proposed TE application and its performance is compared to that of a traditional overflow solution.
机译:弹性和高可用性被认为是5G网络中的基本要求。为了满足这些要求,卫星组件在移动回程网络中的集成是一个引人注目的主张,以便为关键小区站点提供备份连接,并从拥塞区域转移流量,以便在峰值时间期间补充其地面链路中的有限容量或者在总/部分故障或维护的情况下甚至更换。这尤其对偏远/农村地区的公共保护和救灾(PPDR)通信的兴趣尤其是可能需要快速部署的新摩托能力以及陆地回程基础设施可能遭受损害的困境。本文首先介绍了一种架构框架,其能够将卫星容量的集成和管理作为软件定义网络(SDN)的交通工程移动回程网络的组成部分集成和管理。然后,建议基于SDN的流量工程(TE)应用程序来管理用于恢复性的某些动态可控卫星容量,以便在地面链路中的故障和非故障条件下最大化网络实用程序功能。提出了数值结果以评估所提出的TE应用的益处,并将其性能与传统溢流解决方案的效果进行比较。

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