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Stable path selection and safe backup routing for Optical Border Gateway Protocol (OBGP) and Extended Optical Border Gateway Protocol (OBGP+)

机译:光边界网关协议(OBGP)和扩展光边界网关协议(OBGP +)的稳定路径选择和安全备份路由

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Border Gateway Protocol (BGP) is an inter-domain routing protocol that allows an autonomous system (AS) to apply local policies for selecting the best route and decide whether the route information is propagated to other ASes or not. But since the last few years, the research community has shown an increasing interest in the subject of inter-domain routing in optical networks, so there will be need to modify existing BGP with optical counterparts. However, in past few years it is widely accepted now that a multi-domain routing model mostly centered on the exchange of reachability information. So the protocol like the one we have today or the one provided by Optical Border Gateway Protocol (OBGP) is not going to be enough in the future. So routing domains must be able to exchange both, reachability, as well as aggregated Path State Information (PSI). Understanding that there is a missing piece in the routing models provided by BGP and OBGP, but contributing with solutions capable of highly improving the performance of these routing protocols without increasing the number and frequency of the routing messages exchanged between domains is a challenging task. So introduction to the Extended Optical Border Gateway Protocol(OBGP+) was proposed to overcome shortcomings. But when it comes to the case of failure scenario, it is known to us that during convergence BGP withdraws the failed path and selects immediately an alternate path for backup routing. The time required for this convergence should be minimum as possible otherwise the data loss will be enormous. In this paper, Convergence time had been studied for Optical Border Gateway Protocol (OBGP) and Extended Optical Border Gateway Protocol (OBGP+). Extensive simulation of the experiments reveals that OBGP+ is performing better than OBGP in the failure scenarios.
机译:边界网关协议(BGP)是一种域间路由协议,它允许自治系统(AS)应用本地策略来选择最佳路由,并确定路由信息是否传播到其他AS。但是自最近几年以来,研究团体对光网络中的域间路由这一主题表现出了越来越浓厚的兴趣,因此,有必要使用光对应物来修改现有的BGP。但是,在过去的几年中,现在广泛接受的是,多域路由模型主要集中在可达性信息的交换上。因此,像今天这样的协议或由光边界网关协议(OBGP)提供的协议在将来还远远不够。因此,路由域必须能够交换可达性和聚合的路径状态信息(PSI)。理解BGP和OBGP提供的路由模型中缺少一个部分,但是在不增加域之间交换的路由消息的数量和频率的情况下,为能够大大提高这些路由协议性能的解决方案做出贡献是一项艰巨的任务。因此,提出了扩展光边界网关协议(OBGP +)的介绍以克服该缺点。但是,对于失败情形,我们知道在收敛期间BGP会撤消失败的路径并立即选择备用路径进行备份路由。收敛所需的时间应尽可能短,否则数据丢失将是巨大的。本文研究了光边界网关协议(OBGP)和扩展光边界网关协议(OBGP +)的收敛时间。实验的广泛仿真表明,在故障情况下,OBGP +的性能要优于OBGP。

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