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Minimizing the network availability upgrade cost with geodiversity guarantees

机译:通过地理多样性保证将网络可用性升级成本降至最低

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As telecommunication networks are a critical infrastructure of our society, they must evolve to provide high end-to-end availability and high resilience to large-scale disasters. Path protection mechanisms can improve end-to-end availability but, in general, might not be enough to reach the availability required by critical services. Moreover, adding geodiversity to the routing paths (i.e., selecting path pairs with higher geographical distance between them) enhances the network disaster resilience but also makes it more challenging to reach a high end-to-end availability as the resulting paths tend to be longer. So, for a network where each link is characterized by its current availability and by the cost of upgrading its availability to a new value, this paper proposes some strategies aiming to determine a set of links to be upgraded at a minimum cost ensuring a desired level of availability and geodiversity. The problem is defined as an integer non-linear programming model, a solving algorithm based on different greedy strategies is proposed and the relative performance of the different strategies is evaluated on a set of problem instances.
机译:由于电信网络是我们社会的重要基础设施,因此它们必须发展以提供高端到端可用性和对大规模灾难的高弹性。路径保护机制可以提高端到端的可用性,但通常可能不足以达到关键服务所需的可用性。此外,在路由路径中增加地理多样性(即,选择路径对之间具有更高地理距离的路径对)可增强网络灾难恢复能力,但由于最终路径往往更长,因此实现高端到端可用性也更具挑战性。因此,对于每个链路都以其当前可用性和将其可用性升级为新值的成本为特征的网络,本文提出了一些策略,旨在确定一组以最低成本升级的链路,以确保达到所需的水平可用性和地域多样性。该问题被定义为一个整数非线性规划模型,提出了一种基于不同贪婪策略的求解算法,并在一组问题实例上评估了不同策略的相对性能。

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