Publikation: The Price of Upwardness
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Not every directed acyclic graph (DAG) whose underlying undirected graph is planar admits an upward planar drawing. We are interested in pushing the notion of upward drawings beyond planarity by considering upward k-planar drawings of DAGs in which the edges are monotonically increasing in a common direction and every edge is crossed at most k times for some integer k≥1. We show that the number of crossings per edge in a monotone drawing is in general unbounded for the class of bipartite outerplanar, cubic, or bounded pathwidth DAGs. However, it is at most two for outerpaths and it is at most quadratic in the bandwidth in general. From the computational point of view, we prove that testing upward-k-planarity is NP-complete already for k=1 and even for restricted instances for which upward planarity testing is polynomial. On the positive side, we can decide in linear time whether a single-source DAG admits an upward 1-planar drawing in which all vertices are incident to the outer face.
This is the full version of a paper that appeared in the Proc. 32nd Int. Symp. Graph Drawing & Network Visualization (GD 2024)
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ANGELINI, Patrizio, Therese BIEDL, Markus CHIMANI, Sabine CORNELSEN, Giordano DA LOZZO, Seok-Hee HONG, Giuseppe LIOTTA, Maurizio PATRIGNANI, Sergey PUPYREV, Ignaz RUTTER, Alexander WOLFF, 2025. The Price of Upwardness. In: Discrete Mathematics & Theoretical Computer Science. EPIsciences. 2025, 27(3), 15222. ISSN 1462-7264. eISSN 1365-8050. Verfügbar unter: doi: 10.46298/dmtcs.15222BibTex
@article{Angelini2025-08-19Price-76072,
title={The Price of Upwardness},
year={2025},
doi={10.46298/dmtcs.15222},
number={3},
volume={27},
issn={1462-7264},
journal={Discrete Mathematics & Theoretical Computer Science},
author={Angelini, Patrizio and Biedl, Therese and Chimani, Markus and Cornelsen, Sabine and Da Lozzo, Giordano and Hong, Seok-Hee and Liotta, Giuseppe and Patrignani, Maurizio and Pupyrev, Sergey and Rutter, Ignaz and Wolff, Alexander},
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This is the full version of a paper that appeared in the Proc. 32nd Int. Symp. Graph Drawing & Network Visualization (GD 2024)</dcterms:abstract>
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