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  1. (1 other version)A formalization of the Protagoras court paradox in a temporal logic of epistemic and normative reasons.Meghdad Ghari - 2024 - Artificial Intelligence and Law 32 (2):325-367.
    We combine linear temporal logic (with both past and future modalities) with a deontic version of justification logic to provide a framework for reasoning about time and epistemic and normative reasons. In addition to temporal modalities, the resulting logic contains two kinds of justification assertions: epistemic justification assertions and deontic justification assertions. The former presents justification for the agent’s knowledge and the latter gives reasons for why a proposition is obligatory. We present two kinds of semantics for the logic: one (...)
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  • Agent strands in the action language n C +.Robert Craven & Marek Sergot - 2008 - Journal of Applied Logic 6 (2):172-191.
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  • Shifting Priorities: Simple Representations for Twenty-seven Iterated Theory Change Operators.Hans Rott - 2009 - In Jacek Malinowski David Makinson & Wansing Heinrich (eds.), Towards Mathematical Philosophy. Springer. pp. 269–296.
    Prioritized bases, i.e., weakly ordered sets of sentences, have been used for specifying an agent’s ‘basic’ or ‘explicit’ beliefs, or alternatively for compactly encoding an agent’s belief state without the claim that the elements of a base are in any sense basic. This paper focuses on the second interpretation and shows how a shifting of priorities in prioritized bases can be used for a simple, constructive and intuitive way of representing a large variety of methods for the change of belief (...)
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  • Executable specification of open multi-agent systems.Alexander Artikis & Marek Sergot - 2010 - Logic Journal of the IGPL 18 (1):31-65.
    Multi-agent systems where the agents are developed by parties with competing interests, and where there is no access to an agent’s internal state, are often classified as ‘open’. The members of such systems may inadvertently fail to, or even deliberately choose not to, conform to the system specification. Consequently, it is necessary to specify the normative relations that may exist between the members, such as permission, obligation, and institutional power. We present a framework being developed for executable specification of open (...)
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  • (1 other version)A formalization of the Protagoras court paradox in a temporal logic of epistemic and normative reasons.Meghdad Ghari - 2023 - Artificial Intelligence and Law 31:1-43.
    We combine linear temporal logic (with both past and future modalities) with a deontic version of justification logic to provide a framework for reasoning about time and epistemic and normative reasons. In addition to temporal modalities, the resulting logic contains two kinds of justification assertions: epistemic justification assertions and deontic justification assertions. The former presents justification for the agent’s knowledge and the latter gives reasons for why a proposition is obligatory. We present two kinds of semantics for the logic: one (...)
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  • Checking EMTLK Properties of Timed Interpreted Systems Via Bounded Model Checking.Bożena Woźna-Szcześniak & Andrzej Zbrzezny - 2016 - Studia Logica 104 (4):641-678.
    We investigate a SAT-based bounded model checking method for EMTLK that is interpreted over timed models generated by timed interpreted systems. In particular, we translate the existential model checking problem for EMTLK to the existential model checking problem for a variant of linear temporal logic, and we provide a SAT-based BMC technique for HLTLK. We evaluated the performance of our BMC by means of a variant of a timed generic pipeline paradigm scenario and a timed train controller system.
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  • Multi-Modal CTL: Completeness, Complexity, and an Application.Thomas Ågotnes, Wiebe Van der Hoek, Juan A. Rodríguez-Aguilar, Carles Sierra & Michael Wooldridge - 2009 - Studia Logica 92 (1):1 - 26.
    We define a multi-modal version of Computation Tree Logic (CTL) by extending the language with path quantifiers $E^\delta $ and $E^\delta $ where δ denotes one of finitely many dimensions, interpreted over Kripke structures with one total relation for each dimension. As expected, the logic is axiomatised by taking a copy of a CTL axiomatisation for each dimension. Completeness is proved by employing the completeness result for CTL to obtain a model along each dimension in turn. We also show that (...)
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  • Multi-Modal CTL: Completeness, Complexity, and an Application.Thomas Ågotnes, Wiebe Hoek, Juan Rodríguez-Aguilar, Carles Sierra & Michael Wooldridge - 2009 - Studia Logica 92 (1):1-26.
    We define a multi-modal version of Computation Tree Logic (ctl) by extending the language with path quantifiers E δ and A δ where δ denotes one of finitely many dimensions, interpreted over Kripke structures with one total relation for each dimension. As expected, the logic is axiomatised by taking a copy of a ctl axiomatisation for each dimension. Completeness is proved by employing the completeness result for ctl to obtain a model along each dimension in turn. We also show that (...)
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  • On knowledge and obligation.Can Başķent, Loes Olde Loohuis & Rohit Parikh - 2012 - Episteme 9 (2):171-188.
    This article provides a brief overview of several formal frameworks concerning the relation between knowledge on the one hand, and obligation on the other. We discuss the paradox of the knower, knowledge based obligation, knowingly doing, deontic dynamic epistemology, descriptive obligations, and responsibilities as dynamic epistemology.
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  • “That Will Do”: Logics of Deontic Necessity and Sufficiency.Frederik Van De Putte - 2017 - Erkenntnis 82 (3):473-511.
    We study a logic for deontic necessity and sufficiency, as originally proposed in van Benthem :36–41, 1979). Building on earlier work in modal logic, we provide a sound and complete axiomatization for it, consider some standard extensions, and study other important properties. After that, we compare this logic to the logic of “obligation as weakest permission” from Anglberger et al. :807–827, 2015).
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  • The Logic of Knowledge Based Obligation.Eric Pacuit, Rohit Parikh & Eva Cogan - 2006 - Synthese 149 (2):311-341.
    Deontic Logic goes back to Ernst Mally’s 1926 work, Grundgesetze des Sollens: Elemente der Logik des Willens [Mally. E.: 1926, Grundgesetze des Sollens: Elemente der Logik des Willens, Leuschner & Lubensky, Graz], where he presented axioms for the notion ‘p ought to be the case’. Some difficulties were found in Mally’s axioms, and the field has much developed. Logic of Knowledge goes back to Hintikka’s work Knowledge and Belief [Hintikka, J.: 1962, Knowledge and Belief: An Introduction to the Logic of (...)
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  • A formalisation of violation, error recovery, and enforcement in the bit transmission problem.Alessio Lomuscio & Marek Sergot - 2004 - Journal of Applied Logic 2 (1):93-116.
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  • Bounded model checking for knowledge and real time.Alessio Lomuscio, Wojciech Penczek & Bożena Woźna - 2007 - Artificial Intelligence 171 (16-17):1011-1038.
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  • On obligations and normative ability: Towards a logical analysis of the social contract.Michael Wooldridge & Wiebe van der Hoek - 2005 - Journal of Applied Logic 3 (3-4):396-420.
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  • Norms as ascriptions of violations: An analysis in modal logic.Davide Grossi - 2011 - Journal of Applied Logic 9 (2):95-112.
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  • Automatic verification of multi-agent systems by model checking via ordered binary decision diagrams.Franco Raimondi & Alessio Lomuscio - 2007 - Journal of Applied Logic 5 (2):235-251.
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