Enablers and Inhibitors in Causal Justifications of Logic Programs

February 22, 2016 ยท The Ethereal ยท ๐Ÿ› Theory and Practice of Logic Programming

๐Ÿ”ฎ THE ETHEREAL: The Ethereal
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Authors Pedro Cabalar, Jorge Fandinno arXiv ID 1602.06897 Category cs.LO: Logic in CS Cross-listed cs.AI Citations 8 Venue Theory and Practice of Logic Programming Last Checked 5 months ago
Abstract
To appear in Theory and Practice of Logic Programming (TPLP). In this paper we propose an extension of logic programming (LP) where each default literal derived from the well-founded model is associated to a justification represented as an algebraic expression. This expression contains both causal explanations (in the form of proof graphs built with rule labels) and terms under the scope of negation that stand for conditions that enable or disable the application of causal rules. Using some examples, we discuss how these new conditions, we respectively call "enablers" and "inhibitors", are intimately related to default negation and have an essentially different nature from regular cause-effect relations. The most important result is a formal comparison to the recent algebraic approaches for justifications in LP: "Why-not Provenance" (WnP) and "Causal Graphs" (CG). We show that the current approach extends both WnP and CG justifications under the Well-Founded Semantics and, as a byproduct, we also establish a formal relation between these two approaches.
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