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Improving the Connectivity Resilience of a Telecommunications Network to Multiple Link Failures Through a Third-Party Network

机译:通过第三方网络提高电信网络对多链路故障的连接弹性

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Currently, telecommunication networks are fully resilient, in terms of connectivity, to single link failures. On the other hand, multiple simultaneous link failures are becoming a concern to network operators, mainly due to malicious human activities. Full connectivity resilience to multiple link failures is too costly and other solutions must be envisaged. For a given maximum number of simultaneous link failures, the connectivity resilience metric adopted here is the minimum number of network node pairs that can still communicate for any set of failing links. In this work, the connectivity resilience to multiple link failures is improved by resorting to a third-party network for temporary additional connectivity (i.e., while the failing links are not reestablished). In such a solution, some nodes must be selected to act as gateway nodes between the two networks. For a given network topology and a given number of gateway nodes, the aim is to select the most appropriate gateway nodes so that the connectivity resilience is improved as much as possible. To address this problem, a Gateway Node Selection (GNS) algorithm is proposed where the most damaging sets of failing links are identified and, then, a set cover problem type is defined and solved to select the gateway nodes. The computational results demonstrate the effectiveness of the proposed GNS algorithm over two well-known network topologies.
机译:当前,就连接性而言,电信网络对于单链路故障具有完全的弹性。另一方面,主要由于恶意的人为活动,多个同时发生的链路故障已成为网络运营商关注的问题。对多个链路故障的完全连接弹性太昂贵,因此必须考虑采用其他解决方案。对于给定的最大同时链接故障数,此处采用的连接弹性指标是仍能为任何一组失败的链接进行通信的网络节点对的最小数量。在这项工作中,通过使用第三方网络进行临时的附加连接(即,在不重新建立失败的链接的情况下),可以提高对多个链路故障的连接弹性。在这种解决方案中,必须选择一些节点作为两个网络之间的网关节点。对于给定的网络拓扑和给定数量的网关节点,目标是选择最合适的网关节点,以便尽可能提高连接弹性。为了解决此问题,提出了一种网关节点选择(GNS)算法,该算法可识别出破坏力最大的故障链路集,然后定义并解决一组覆盖问题类型,以选择网关节点。计算结果证明了所提出的GNS算法在两种众所周知的网络拓扑结构上的有效性。

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