Going the Extra Mile with Disaster-Aware Network Augmentation
Jorik Oostenbrink, Fernando A. Kuipers
Abstract
Network outages have significant economic and societal costs. While network operators have become adept at managing smaller failures, this is not the case for larger, regional failures such as natural disasters. Although it is not possible, and certainly not economic, to prevent all potential disaster damage and impact, we can reduce their impact by adding cost-efficient, geographically redundant, cable connections to the network.
In this paper, we provide algorithms for finding cost-efficient, disaster-aware cable routes based on empirical hazard data. In contrast to previous work, our approach finds disaster-aware routes by considering the impact of a large set of input disasters on the network as a whole, as well as on the individual cable. For this, we propose the Disaster-Aware Network Augmentation Problem of finding a new cable connection that minimizes a function of disaster impact and cable cost. We prove that this problem is NP-hard and give an exact algorithm, as well as a heuristic, for solving it. Our algorithms are applicable to both planar and geographical coordinates. Using actual seismic hazard data, we demonstrate that by applying our algorithms, network operators can cost-efficiently raise the resilience of their network and future cable connections.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Related papers
- On Network Topology Augmentation for Global Connectivity under Regional FailuresJános Tapolcai, Zsombor L. Hajdú, Alija Pasic, Pin-Han Ho et al.INFOCOM 2021 · 12 citations
- Optimal Shielding to Guarantee Region-Based Connectivity under Geographical FailuresBinglin Tao, Mingyu Xiao, Bakhadyr Khoussainov, Junqiang PengINFOCOM 2022 · 6 citations
- Availability-Aware Routing in Presence of Geographically Correlated FailuresBalázs Vass, Levente Birszki, Erika R. Bérczi-Kovács, Péter Babarczi et al.INFOCOM 2026
- Polynomial-Time Algorithm for the Regional SRLG-disjoint Paths ProblemBalázs Vass, Erika R. Bérczi-Kovács, Ábel Barabás, Zsombor L. Hajdú et al.INFOCOM 2022 · 11 citations
- Access Denied: Assessing Physical Risks to Internet Access NetworksAlexander Marder, Zesen Zhang, Ricky K. P. Mok, Ramakrishna Padmanabhan et al.USENIX Security 2023
