Splitting Epistemic Logic Programs

Author:

CABALAR PEDRO,FANDINNO JORGEORCID,FARIÑAS DEL CERRO LUIS

Abstract

AbstractEpistemic logic programs constitute an extension of the stable model semantics to deal with new constructs called subjective literals. Informally speaking, a subjective literal allows checking whether some objective literal is true in all or some stable models. As it can be imagined, the associated semantics has proved to be non-trivial, since the truth of subjective literals may interfere with the set of stable models it is supposed to query. As a consequence, no clear agreement has been reached and different semantic proposals have been made in the literature. Unfortunately, comparison among these proposals has been limited to a study of their effect on individual examples, rather than identifying general properties to be checked. In this paper, we propose an extension of the well-known splitting property for logic programs to the epistemic case. We formally define when an arbitrary semantics satisfies the epistemic splitting property and examine some of the consequences that can be derived from that, including its relation to conformant planning and to epistemic constraints. Interestingly, we prove (through counterexamples) that most of the existing approaches fail to fulfill the epistemic splitting property, except the original semantics proposed by Gelfond 1991 and a recent proposal by the authors, called Founded Autoepistemic Equilibrium Logic.

Publisher

Cambridge University Press (CUP)

Subject

Artificial Intelligence,Computational Theory and Mathematics,Hardware and Architecture,Theoretical Computer Science,Software

Reference23 articles.

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2. Fandinno, J . 2019. Founded (auto)epistemic equilibrium logic satisfies epistemic splitting. Theory and Practice of Logic Programming 19, 5–6, 671–687.

3. Son, T. , Le, T. , Kahl, P. and Leclerc, A. 2017. On computing world views of epistemic logic programs.See Sierra (2017), 1269–1275.

4. Gelfond, M. 1991.Strong introspection. In Proceedings of the Ninth National Conference on Artificial Intelligence (AAAI’91), Dean, T. and McKeown, K. , Eds. AAAI Press/The MIT Press, 386–391.

5. Gelfond, M. and Lifschitz, V. 1988. The stable model semantics for logic programming. In Proceedings of the Fifth International Conference and Symposium of Logic Programming (ICLP’88), Kowalski, R. and Bowen, K. , Eds. MIT Press, 1070–1080.

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