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Smart routing: Towards proactive fault handling of software-defined networks

机译:智能路由:实现软件定义网络的主动故障处理

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摘要

In recent years, the emerging paradigm of software-defined networking has become a hot and thriving topic in both the industrial and academic sectors. Software-defined networking offers numerous benefits against legacy networking systems by simplifying the process of network management through reducing the cost of network configurations. Currently, data plane fault management is limited to two mechanisms: proactive and reactive. These fault management and recovery techniques are activated only after a failure occurrence and hence packet loss is highly likely to occur. This is due to convergence time where new network paths will need to be allocated in order to forward the affected traffic rather than drop it. Such convergence leads to temporary service disruption and unavailability. Practically, not only the speed of recovery mechanisms affects the convergence, but also the delay caused by the process of failure detection. In this paper, we define a new approach for data plane fault management in software-defined networks where the goal is to eliminate the convergence process altogether rather than accelerate the failure detection and recovery. We propose a new framework, called Smart Routing, which allows the network controller to receive forewarning signs on failures and hence avoid risky paths before the failure incidents occur. The proposed approach aims to decrease service disruption, which in turn increases network service availability. We validate our framework through a set of experiments that demonstrate how the underlying model runs and its impact on improving service availability. We take as example of the applicability of the new framework three types of topologies covering real and simulated networks. (C) 2020 Elsevier B.V. All rights reserved.
机译:近年来,新兴的软件定义网络范式已成为工业和学术领域的热门话题。通过减少网络配置的成本,简化了网络管理过程,软件定义的网络相对于传统的网络系统具有许多优势。当前,数据平面故障管理限于两种机制:主动和被动。这些故障管理和恢复技术仅在发生故障后才被激活,因此很有可能发生数据包丢失。这是由于收敛时间所致,在该时间内需要分配新的网络路径以转发受影响的流量而不是丢弃它。这种融合导致临时服务中断和不可用。实际上,不仅恢复机制的速度会影响收敛,而且还会影响故障检测过程所导致的延迟。在本文中,我们定义了一种在软件定义的网络中进行数据平面故障管理的新方法,其目标是完全消除收敛过程,而不是加快故障检测和恢复速度。我们提出了一个称为“智能路由”的新框架,该框架使网络控制器可以接收有关故障的预警标志,从而避免在故障事件发生之前避免使用危险的路径。所提出的方法旨在减少服务中断,从而增加网络服务的可用性。我们通过一组实验来验证我们的框架,这些实验演示了基础模型的运行方式及其对提高服务可用性的影响。我们以新框架的适用性为例,它涵盖了真实和模拟网络的三种拓扑。 (C)2020 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Computer networks》 |2020年第7期|107104.1-107104.14|共14页
  • 作者

  • 作者单位

    Technol Univ Dublin Sch Elect & Elect Engn Dublin D08 NF82 Ireland;

    Univ Portsmouth Sch Comp Buckingham Bldg Portsmouth PO1 3HE Hants England;

    Natl Quemoy Univ Dept Comp Sci & Informat Engn Kinmen 892 Taiwan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    OpenFlow; Software-defined networking; Fault management; Risk management; Service availability;

    机译:开放流软件定义的网络;故障管理;风险管理;服务可用性;

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