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We've got you covered: Failure recovery with backup tunnels in traffic engineering

机译:我们为您服务:流量工程中使用备份隧道进行故障恢复

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We present Sentinel, a novel failure recovery system for traffic engineering that pre-computes and installs backup tunnels to improve the robustness of software defined wide area networks (WANs). When a link fails, switches locally redirect traffic to backup tunnels and recover immediately in the data plane, thus substantially reducing the transient congestion compared to reactive rescaling. On the other hand Sentinel completely avoids the bandwidth headroom required by existing proactive approaches like FFC, and improves efficiency of operating the expensive WAN. We make several technical contributions in designing Sentinel. We formulate traffic engineering with backup tunnels (TE-BT) as optimization programs. We propose an approximation algorithm to efficiently solve the problem. We further present a concrete design and implementation of the system based on Openflow group tables for backup tunnels. Extensive experiments on Mininet and numerical simulations show that similar to FFC, Sentinel reduces congestion by 45% compared with rescaling, and its algorithm runs much faster than FFC. Sentinel only introduces a small number of additional forwarding rules and can be readily implemented on today's Openflow switches.
机译:我们介绍了Sentinel,这是一种用于流量工程的新型故障恢复系统,可以预先计算并安装备用隧道,以提高软件定义的广域网(WAN)的健壮性。当链路发生故障时,交换机会将流量本地重定向到备份隧道,并立即在数据平面中恢复,从而与无功调整相比,可大大减少瞬态拥塞。另一方面,Sentinel完全避免了现有的主动方法(如FFC)所需的带宽余量,并提高了操作昂贵的WAN的效率。我们在设计Sentinel方面做出了几项技术贡献。我们以后备隧道(TE-BT)作为优化程序来制定流量工程。我们提出一种近似算法来有效解决该问题。我们进一步介绍了基于用于备份隧道的Openflow组表的系统的具体设计和实现。在Mininet上进行的大量实验和数值模拟表明,与FFC类似,Sentinel与重新缩放相比将拥塞减少了45%,并且其算法的运行速度比FFC快得多。 Sentinel仅引入了少量其他转发规则,并且可以在当今的Openflow交换机上轻松实现。

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