Reasoning in Infinitely Valued G-IALCQ
Abstract
Fuzzy Description Logics (FDLs) are logic-based formalisms used to represent and reason with vague or imprecise knowledge. It has been recently shown that reasoning in most FDLs using truth values from the interval [0,1] becomes undecidable in the presence of a negation constructor and general concept inclusion axioms. One exception to this negative result are FDLs whose semantics is based on the infinitely valued G\"odel t-norm (G). In this paper, we extend previous decidability results for G-IALC to deal also with qualified number restrictions. Our novel approach is based on a combination of the known crispification technique for finitely valued FDLs and the automata-based procedure originally developed for reasoning in G-IALC. The proposed approach combines the advantages of these two methods, while removing their respective drawbacks.
Keywords
Cite
@article{arxiv.1509.08761,
title = {Reasoning in Infinitely Valued G-IALCQ},
author = {Stefan Borgwardt and Rafael Peñaloza},
journal= {arXiv preprint arXiv:1509.08761},
year = {2015}
}
Comments
Workshop on Weighted Logics for Artificial Intelligence, 2015