Interference-free Walks in Time: Temporally Disjoint Paths

Author:

Klobas Nina1,Mertzios George B.1,Molter Hendrik2,Niedermeier Rolf3,Zschoche Philipp3

Affiliation:

1. Durham University

2. Ben-Gurion University of the Negev

3. Technische Universitat Berlin

Abstract

We investigate the computational complexity of finding temporally disjoint paths or walks in temporal graphs. There, the edge set changes over discrete time steps and a temporal path (resp. walk) uses edges that appear at monotonically increasing time steps. Two paths (or walks) are temporally disjoint if they never use the same vertex at the same time; otherwise, they interfere. This reflects applications in robotics, traffic routing, or finding safe pathways in dynamically changing networks. On the one extreme, we show that on general graphs the problem is computationally hard. The "walk version" is W[1]-hard when parameterized by the number of routes. However, it is polynomial-time solvable for any constant number of walks. The "path version" remains NP-hard even if we want to find only two temporally disjoint paths. On the other extreme, restricting the input temporal graph to have a path as underlying graph, quite counterintuitively, we find NP-hardness in general but also identify natural tractable cases.

Publisher

International Joint Conferences on Artificial Intelligence Organization

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Multistage s–t Path: Confronting Similarity with Dissimilarity;Algorithmica;2023-01-03

2. Payment Scheduling in the Interval Debt Model;Lecture Notes in Computer Science;2023

3. Interference-free walks in time: temporally disjoint paths;Autonomous Agents and Multi-Agent Systems;2022-10-21

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