
handle: 10281/303163 , 10281/412717
We address the problem of handling provenance information in ELHr ontologies. We consider a setting recently introduced for ontology-based data access, based on semirings and extending classical data provenance, in which ontology axioms are annotated with provenance tokens. A consequence inherits the provenance of the axioms involved in deriving it, yielding a provenance polynomial as an annotation. We analyse the semantics for the ELHr case and show that the presence of conjunctions poses various difficulties for handling provenance, some of which are mitigated by assuming multiplicative idempotency of the semiring. Under this assumption, we study three problems: ontology completion with provenance, computing the set of relevant axioms for a consequence, and query answering.
[INFO.INFO-AI] Computer Science [cs]/Artificial Intelligence [cs.AI], FOS: Computer and information sciences, Computer Science - Logic in Computer Science, [INFO.INFO-LO] Computer Science [cs]/Logic in Computer Science [cs.LO], Artificial Intelligence (cs.AI), Computer Science - Artificial Intelligence, [INFO.INFO-DB] Computer Science [cs]/Databases [cs.DB], provenance, description logics, description logics; provenance, Logic in Computer Science (cs.LO), 16Y60
[INFO.INFO-AI] Computer Science [cs]/Artificial Intelligence [cs.AI], FOS: Computer and information sciences, Computer Science - Logic in Computer Science, [INFO.INFO-LO] Computer Science [cs]/Logic in Computer Science [cs.LO], Artificial Intelligence (cs.AI), Computer Science - Artificial Intelligence, [INFO.INFO-DB] Computer Science [cs]/Databases [cs.DB], provenance, description logics, description logics; provenance, Logic in Computer Science (cs.LO), 16Y60
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