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Comparison of proactive and reactive methods for IP fast restoration using localization algorithm

机译:基于定位算法的IP快速恢复的主动和被动方法比较

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To shorten the time taken to restore an IP network after a failures, we previously proposed a proactive method that uses a localization algorithm to reduce the number of alternate routing tables in the past study. Although we showed that it shortened the restoration time from failures by switching the routing tables to alternate ones set up for handling the failures, deployability remained a problem to be solved. In this paper, we propose a reactive method that enables the step-by-step deployment through the use of a tunneling technique. It also uses the localization algorithm to decide the tunnel's end-point. Experimental results show its easy deployability and smaller computing resource requirements, such as the number of alternate routing tables and required CPU time, compared with the proactive method. Since the reactive method does not require routing table updates at intermediate nodes, it can restore packet reachabilities faster than the proactive method.
机译:为了缩短故障后恢复IP网络所需的时间,我们在过去的研究中先前提出了一种主动方法,该方法使用本地化算法来减少备用路由表的数量。尽管我们通过将路由表切换到用于处理故障的备用表中来缩短了从故障中恢复的时间,但是可部署性仍然是一个有待解决的问题。在本文中,我们提出了一种反应性方法,该方法可以通过使用隧道技术来逐步部署。它还使用定位算法来确定隧道的终点。实验结果表明,与主动方法相比,该方法易于部署,并且对计算资源的要求较小,例如备用路由表的数量和所需的CPU时间。由于被动方法不需要在中间节点更新路由表,因此它比主动方法可以更快地恢复数据包的可达性。

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