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Critical Reroute: A Practical Approach to Network Flow Prioritization using Segment Routing

机译:关键重路由:使用网段路由对网络流进行优先级排序的实用方法

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It is widely recognized that reliable communications are a key element of a successful response to a disaster situation. To address this need, local and regional governments in all parts of the world have deployed dedicated communications networks for first responders. These systems are often prohibitively expensive, voice-only, and are needed only on rare occasions. It would be more cost-effective to use already-existing networks or to deploy networks for shared use. However, due to the sudden increase in demand or physical failure caused by the disaster, shared networks may become overloaded. In such situations, it would be desirable to prioritize traffic flows belonging to public safety applications over others. Solutions such as priority queuing and differentiated services provide partial answers to that goal but leave other problems unsolved. This work presents a novel solution using Segment Routing and a Genetic Algorithm optimizer to minimize the impact of network overload on critical traffic flows. The results show that these methods can reroute flows using a single midpoint such that the total network overload is reduced compared to traditional shortest-path routing while avoiding unnecessarily long paths and taking priority of flows into account.
机译:众所周知,可靠的通信是成功应对灾害情况的关键因素。为了满足这一需求,世界各地的地方和区域政府已经为急救人员部署了专用的通信网络。这些系统通常非常昂贵,仅语音,并且仅在极少数情况下才需要。使用现有网络或部署网络以共享使用会更具成本效益。但是,由于灾难导致需求突然增加或物理故障,共享网络可能会过载。在这种情况下,希望将属于公共安全应用程序的流量优先于其他流量。诸如优先级排队和差异化服务之类的解决方案为该目标提供了部分答案,但其他问题仍未解决。这项工作提出了一种使用段路由和遗传算法优化器的新颖解决方案,以最大程度地减少网络过载对关键流量的影响。结果表明,这些方法可以使用单个中点重新路由流,从而与传统的最短路径路由相比,减少了总的网络过载,同时避免了不必要的长路径并考虑了流的优先级。

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