How Many Lines to Paint the City: Exact Edge-Cover in Temporal Graphs

Fuente: arXiv
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Autores principales: Deligkas, Argyrios, Döring, Michelle, Eiben, Eduard, Goldsmith, Tiger-Lily, Skretas, George, Tennigkeit, Georg
Formato: Preprint
Publicado: 2024
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author Deligkas, Argyrios
Döring, Michelle
Eiben, Eduard
Goldsmith, Tiger-Lily
Skretas, George
Tennigkeit, Georg
author_facet Deligkas, Argyrios
Döring, Michelle
Eiben, Eduard
Goldsmith, Tiger-Lily
Skretas, George
Tennigkeit, Georg
contents Logistics and transportation networks require a large amount of resources to realize necessary connections between locations and minimizing these resources is a vital aspect of planning research. Since such networks have dynamic connections that are only available at specific times, intricate models are needed to portray them accurately. In this paper, we study the problem of minimizing the number of resources needed to realize a dynamic network, using the temporal graphs model. In a temporal graph, edges appear at specific points in time. Given a temporal graph and a natural number k, we ask whether we can cover every temporal edge exactly once using at most k temporal journeys; in a temporal journey consecutive edges have to adhere to the order of time. We conduct a thorough investigation of the complexity of the problem with respect to four dimensions: (a) whether the type of the temporal journey is a walk, a trail, or a path; (b) whether the chronological order of edges in the journey is strict or non-strict; (c) whether the temporal graph is directed or undirected; (d) whether the start and end points of each journey are given or not. We almost completely resolve the complexity of all these problems and provide dichotomies for each one of them with respect to k.
format Preprint
id arxiv_https___arxiv_org_abs_2408_17107
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle How Many Lines to Paint the City: Exact Edge-Cover in Temporal Graphs
Deligkas, Argyrios
Döring, Michelle
Eiben, Eduard
Goldsmith, Tiger-Lily
Skretas, George
Tennigkeit, Georg
Social and Information Networks
Discrete Mathematics
Logistics and transportation networks require a large amount of resources to realize necessary connections between locations and minimizing these resources is a vital aspect of planning research. Since such networks have dynamic connections that are only available at specific times, intricate models are needed to portray them accurately. In this paper, we study the problem of minimizing the number of resources needed to realize a dynamic network, using the temporal graphs model. In a temporal graph, edges appear at specific points in time. Given a temporal graph and a natural number k, we ask whether we can cover every temporal edge exactly once using at most k temporal journeys; in a temporal journey consecutive edges have to adhere to the order of time. We conduct a thorough investigation of the complexity of the problem with respect to four dimensions: (a) whether the type of the temporal journey is a walk, a trail, or a path; (b) whether the chronological order of edges in the journey is strict or non-strict; (c) whether the temporal graph is directed or undirected; (d) whether the start and end points of each journey are given or not. We almost completely resolve the complexity of all these problems and provide dichotomies for each one of them with respect to k.
title How Many Lines to Paint the City: Exact Edge-Cover in Temporal Graphs
topic Social and Information Networks
Discrete Mathematics
url https://arxiv.org/abs/2408.17107