CORTEXA
← Browse
arxivcs.CCcs.AIcs.DScs.LO2026-07-23Cited by 0

Representative Sets in Propositional Abduction

Johannes Schmidt, Mohamed Maizia, Victor Lagerkvist, Johannes K. Fichte

The propositional abduction problem is a well-known form of non-monotonic reasoning where we are asked to find an explanation of a given manifestation. Recently, there has been an influx of results asking more refined questions about the solution space rather than only individual solutions. For example, we might be interested in finding two solutions that are sufficiently far from each other (diverse solutions) in the solution space. In this paper we consider a related representation question where we ask if a given set of explanations S can represent any other explanation (that is, whether their symmetric difference is smaller than a given k). We first study this problem from a classical complexity perspective and obtain a complete classification. While only a handful of cases are tractable, the increase in complexity compared to classical abduction is often smaller than expected. We then study the parameterized complexity for several parameters and obtain new tractable and hard cases. Interestingly, a full parameterized complexity classification would require resolving the parameterized complexity of the covering radius problem from coding theory. To the best of our knowledge, no useful relationship between coding theory and non-monotonic reasoning has previously been established, but such connections seemingly become important when asking more complex questions about solution spaces.

View free PDFSource page

Related papers

arxivcs.AIcs.LOcs.PL2026-07-23

Logic Programming Semantics for Causal Processes

Felix Weitkämper

Motivated by challenging modelling issues in the life sciences, we investigate the relationship between logic programming semantics and the eventual states of causal processes compatible with those logic programs. More precisely, we show that while stable models of positive logic…

View free PDFSource page
arxivcs.AIcs.LO2026-07-23

Differentiable Logic Programming to Mitigate Reasoning Shortcuts in Neurosymbolic Systems

Akihiro Takemura, Katsumi Inoue

Neurosymbolic (NeSy) systems integrate neural networks with logical reasoning to achieve both generalization and interpretability, but recent work has shown they are susceptible to shortcut reasoning behaviors. We propose a novel method using matrix-based differentiable logic pro…

View free PDFSource page
arxivcs.LOcs.AIcs.ET2026-07-23

Scaling Up Formal Representation of Clinical Trial Protocols in Ensemble Logic Using LLMs: A Preliminary Study

Yan Huang, Xubing Hao, Xiaojin Li, Rashmie Abeysinghe, Xiaoqian Jiang, Licong Cui, et al.

The reliance on unstructured free text for documenting clinical trial protocols creates a significant barrier to automated reasoning, cohort discovery, and trial simulation. The lack of formal structure obscures critical temporal phenotypes, such as dynamic eligibility criteria a…

View free PDFSource page
arxivcs.LOcs.AIcs.SE2026-07-23

Encoding Event-B Proof Rules in Prolog: An Interactive Sequent Prover for ProB

Katharina Engels, Jan Gruteser, Michael Leuschel

Event-B is a formal method rooted in predicate logic and set theory. We encoded over 600 proof rules in Prolog, enabling a systematic, comprehensible proof analysis and construction. By integrating the proof rules into the Prolog-based validation tool ProB, we obtain an interacti…

View free PDFSource page