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Abstract
Reasoning with defeasible and conflicting knowledge in an argumentative form is a key research field in computational argumentation. Reasoning under various forms of uncertainty is both a key feature and a challenging barrier for automated argumentative reasoning. It was shown that argumentative reasoning using probabilities faces in general high computational complexity, in particular for the so-called constellation approach. In this paper, we develop an algorithmic approach to overcome this obstacle. We refine existing complexity results and show that two main reasoning tasks, that of computing the probability of a given set being an extension and an argument being acceptable, diverge in their complexity: the former is #P-complete and the latter is #-dot-NP-complete when considering their underlying counting problems. We present an algorithm for the complex task of computing the probability of a set of arguments being a complete extension by using dynamic programming operating on tree-decompositions. An experimental evaluation shows promise of our approach.
Original language | English |
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Title of host publication | Proceedings KR |
Editors | Pierre Marquis, Magdalena Ortiz, Maurice Pagnucco |
Pages | 585-596 |
DOIs | |
Publication status | Published - 2024 |
Event | 21st International Conference on Principles of Knowledge Representation and Reasoning: KR 2024 - Hanoi, Viet Nam Duration: 2 Nov 2024 → 8 Nov 2024 https://kr.org/KR2024/ |
Conference
Conference | 21st International Conference on Principles of Knowledge Representation and Reasoning |
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Abbreviated title | KR 2024 |
Country/Territory | Viet Nam |
City | Hanoi |
Period | 2/11/24 → 8/11/24 |
Internet address |
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FWF - Neue KI - A Novel Computational Workflow for Argumentation in AI
Wallner, J. P. (Co-Investigator (CoI))
1/09/22 → 31/08/25
Project: Research project