Query answering in description logics with transitive roles
Thomas Eiter, Carsten Lutz, Magdalena Ortiz, Mantas Šimkus
Abstract
Thomas Eiter, Carsten Lutz, Magdalena Ortiz, Mantas Šimkus
Abstract
Abstract.We study the computational complexity of conjunctive query answering w.r.t. ontologies formulated in fragments of the description logic SHIQ. Our main result is the identification of two new sources of complexity: the combination of transitive roles and role hierarchies which results in 2-EXPTIME-hardness, and transitive roles alone which result in coNEXPTIME-hardness. These bounds complement the existing result that inverse roles make query answering in SHIQ 2-EXPTIME-hard. We also show that conjunctive query answering with transitive roles, but without inverse roles and role hierarchies, remains in EXPTIME if the ABox is tree-shaped.
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Abstract.We study the computational complexity of conjunctive query answering w.r.t. ontologies formulated in fragments of the description logic SHIQ. Our main result is the identification of two new sources of complexity: the combination of transitive roles and role hierarchies which results in 2-EXPTIME-hardness, and transitive roles alone which result in coNEXPTIME-hardness. These bounds complement the existing result that inverse roles make query answering in SHIQ 2-EXPTIME-hard. We also show that conjunctive query answering with transitive roles, but without inverse roles and role hierarchies, remains in EXPTIME if the ABox is tree-shaped.
Key concepts: Transitive relation, Conjunctive query, EXPTIME, Computer science, Description logic, Theoretical computer science, Inverse, Boolean conjunctive query