Extending Partial 1-Planar Drawings
Abstract
Algorithmic extension problems of partial graph representations such as planar graph drawings or geometric intersection representations are of growing interest in topological graph theory and graph drawing. In such an extension problem, we are given a tuple consisting of a graph , a connected subgraph of and a drawing of , and the task is to extend into a drawing of while maintaining some desired property of the drawing, such as planarity. In this paper we study the problem of extending partial 1-planar drawings, which are drawings in the plane that allow each edge to have at most one crossing. In addition we consider the subclass of IC-planar drawings, which are 1-planar drawings with independent crossings. Recognizing 1-planar graphs as well as IC-planar graphs is \NP-complete and the \NP-completeness easily carries over to the extension problem. Therefore, our focus lies on establishing the tractability of such extension problems in a weaker sense than polynomial-time tractability. Here, we show that both problems are fixed-parameter tractable when parameterized by the number of edges missing from , i.e., the edge deletion distance between and . The second part of the paper then turns to a more powerful parameterization which is based on measuring the vertex+edge deletion distance between the partial and complete drawing, i.e., the minimum number of vertices and edges that need to be deleted to obtain from .
Cite
@article{arxiv.2004.12222,
title = {Extending Partial 1-Planar Drawings},
author = {Eduard Eiben and Robert Ganian and Thekla Hamm and Fabian Klute and Martin Nöllenburg},
journal= {arXiv preprint arXiv:2004.12222},
year = {2020}
}
Comments
A shortened version of this article has been accepted for presentation and publication at the 47th International Colloquium on Automata, Languages and Programming (ICALP 2020)