Query answering with inconsistent existential rules under stable model semantics

Hai Wan, Heng Zhang, Peng Xiao, Haoran Huang, Yan Zhang

Research output: Chapter in Book / Conference PaperConference Paperpeer-review

5 Citations (Scopus)

Abstract

Classical inconsistency-tolerant query answering relies on selecting maximal components of an ABox/database which are consistent with the ontology. However, some rules in ontologies might be unreliable if they are extracted from ontology learning or written by unskillful knowledge engineers. In this paper we present a framework of handling inconsistent existential rules under stable model semantics, which is defined by a notion called rule repairs to select maximal components of the existential rules. Surprisingly, for R-acyclic existential rules with R-stratified or guarded existential rules with stratified negations, both the data complexity and combined complexity of query answering under the rule repair semantics remain the same as that under the conventional query answering semantics. This leads us to propose several approaches to handle the rule repair semantics by calling answer set programming solvers. An experimental evaluation shows that these approaches have good scalability of query answering under rule repairs on realistic cases.
Original languageEnglish
Title of host publicationProceedings of the Thirtieth AAAI Conference on Artificial Intelligence and the Twenty-Eighth Innovative Applications of Artificial Intelligence Conference: 12-17 February 2016, Phoenix, Arizona, USA
PublisherAAAI Press
Pages1095-1101
Number of pages7
ISBN (Print)9781577357605
Publication statusPublished - 2016
EventAAAI Conference on Artificial Intelligence - , United States
Duration: 1 Jan 1980 → …

Publication series

Name
ISSN (Print)2159-5399

Conference

ConferenceAAAI Conference on Artificial Intelligence
Country/TerritoryUnited States
Period1/01/80 → …

Keywords

  • artificial intelligence
  • logic programming

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