TY - JOUR
T1 - Extending partial representations of proper and unit interval graphs
AU - Klavík, Pavel
AU - Kratochvíl, Jan
AU - Otachi, Yota
AU - Rutter, Ignaz
AU - Saitoh, Toshiki
AU - Saumell, Maria
AU - Vyskočil, Tomáš
PY - 2017/4/1
Y1 - 2017/4/1
N2 - The recently introduced problem of extending partial interval representations asks, for an interval graph with some intervals pre-drawn by the input, whether the partial representation can be extended to a representation of the entire graph. In this paper, we give a linear-time algorithm for extending proper interval representations and an almost quadratic-time algorithm for extending unit interval representations. We also introduce the more general problem of bounded representations of unit interval graphs, where the input constrains the positions of some intervals by lower and upper bounds. We show that this problem is NP-complete for disconnected input graphs and give a polynomial-time algorithm for the special class of instances, where the ordering of the connected components of the input graph along the real line is prescribed. This includes the case of partial representation extension. The hardness result sharply contrasts the recent polynomial-time algorithm for bounded representations of proper interval graphs (Balko et al. in 2013). So unless P=NP P=NP, proper and unit interval representations have vastly different structure. This explains why partial representation extension problems for these different types of representations require substantially different techniques.
AB - The recently introduced problem of extending partial interval representations asks, for an interval graph with some intervals pre-drawn by the input, whether the partial representation can be extended to a representation of the entire graph. In this paper, we give a linear-time algorithm for extending proper interval representations and an almost quadratic-time algorithm for extending unit interval representations. We also introduce the more general problem of bounded representations of unit interval graphs, where the input constrains the positions of some intervals by lower and upper bounds. We show that this problem is NP-complete for disconnected input graphs and give a polynomial-time algorithm for the special class of instances, where the ordering of the connected components of the input graph along the real line is prescribed. This includes the case of partial representation extension. The hardness result sharply contrasts the recent polynomial-time algorithm for bounded representations of proper interval graphs (Balko et al. in 2013). So unless P=NP P=NP, proper and unit interval representations have vastly different structure. This explains why partial representation extension problems for these different types of representations require substantially different techniques.
KW - Intersection representation
KW - Partial representation extension
KW - Bounded representations
KW - Restricted representation
KW - Proper interval graph
KW - Unit interval graph
KW - Linear programming
UR - https://www.scopus.com/pages/publications/84975783207
U2 - 10.1007/s00453-016-0133-z
DO - 10.1007/s00453-016-0133-z
M3 - Article
SN - 0178-4617
VL - 77
SP - 1071
EP - 1104
JO - Algorithmica
JF - Algorithmica
IS - 4
ER -