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  1. Two puzzles about ability can.Malte Willer - 2020 - Linguistics and Philosophy 44 (3):551-586.
    The received wisdom on ability modals is that they differ from their epistemic and deontic cousins in what inferences they license and better receive a universal or conditional analysis instead of an existential one. The goal of this paper is to sharpen the empirical picture about the semantics of ability modals, and to propose an analysis that explains what makes the can of ability so special but that also preserves the crucial idea that all uses of can share a common (...)
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  • A logic of intention and attempt.Emiliano Lorini & Andreas Herzig - 2008 - Synthese 163 (1):45 - 77.
    We present a modal logic called (logic of intention and attempt) in which we can reason about intention dynamics and intentional action execution. By exploiting the expressive power of , we provide a formal analysis of the relation between intention and action and highlight the pivotal role of attempt in action execution. Besides, we deal with the problems of instrumental reasoning and intention persistence.
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  • On combinations of propositional dynamic logic and doxastic modal logics.Renate A. Schmidt & Dmitry Tishkovsky - 2008 - Journal of Logic, Language and Information 17 (1):109-129.
    We prove completeness and decidability results for a family of combinations of propositional dynamic logic and unimodal doxastic logics in which the modalities may interact. The kind of interactions we consider include three forms of commuting axioms, namely, axioms similar to the axiom of perfect recall and the axiom of no learning from temporal logic, and a Church–Rosser axiom. We investigate the influence of the substitution rule on the properties of these logics and propose a new semantics for the test (...)
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  • The cognitive structure of surprise: Looking for basic principles.Emiliano Lorini & Cristiano Castelfranchi - 2007 - Topoi 26 (1):133-149.
    We develop a conceptual and formal clarification of notion of surprise as a belief-based phenomenon by exploring a rich typology. Each kind of surprise is associated with a particular phase of cognitive processing and involves particular kinds of epistemic representations (representations and expectations under scrutiny, implicit beliefs, presuppositions). We define two main kinds of surprise: mismatch-based surprise and astonishment. In the central part of the paper we suggest how a formal model of surprise can be integrated with a formal model (...)
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  • Conflicting intentions: rectifying the consistency requirements.Hein Duijf, Jan Broersen & John-Jules Ch Meyer - 2019 - Philosophical Studies 176 (4):1097-1118.
    Many philosophers are convinced that rationality dictates that one’s overall set of intentions be consistent. The starting point and inspiration for our study is Bratman’s planning theory of intentions. According to this theory, one needs to appeal to the fulfilment of characteristic planning roles to justify norms that apply to our intentions. Our main objective is to demonstrate that one can be rational despite having mutually inconsistent intentions. Conversely, it is also shown that one can be irrational despite having a (...)
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  • A verification framework for agent programming with declarative goals.F. S. de Boer, K. V. Hindriks, W. van der Hoek & J. -J. Ch Meyer - 2007 - Journal of Applied Logic 5 (2):277-302.
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  • A formal model of emotion triggers: an approach for BDI agents.Bas R. Steunebrink, Mehdi Dastani & John-Jules Ch Meyer - 2012 - Synthese 185 (S1):83-129.
    This paper formalizes part of a well-known psychological model of emotions. In particular, the logical structure underlying the conditions that trigger emotions are studied and then hierarchically organized. The insights gained therefrom are used to guide a formalization of emotion triggers, which proceeds in three stages. The first stage captures the conditions that trigger emotions in a semiformal way, i.e., without committing to an underlying formalism and semantics. The second stage captures the main psychological notions used in the emotion model (...)
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  • (1 other version)Towards a theory of intention revision.Wiebe van der Hoek, Wojciech Jamroga & Michael Wooldridge - 2007 - Synthese 155 (2):265-290.
    Although the change of beliefs in the face of new information has been widely studied with some success, the revision of other mental states has received little attention from the theoretical perspective. In particular, intentions are widely recognised as being a key attitude for rational agents, and while several formal theories of intention have been proposed in the literature, the logic of intention revision has been hardly considered. There are several reasons for this: perhaps most importantly, intentions are very closely (...)
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  • Agent deliberation in an executable temporal framework.Michael Fisher - 2011 - Journal of Applied Logic 9 (4):223-238.
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  • Intention as commitment toward time.Marc van Zee, Dragan Doder, Leendert van der Torre, Mehdi Dastani, Thomas Icard & Eric Pacuit - 2020 - Artificial Intelligence 283 (C):103270.
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  • A logic for reasoning about counterfactual emotions.Emiliano Lorini & François Schwarzentruber - 2011 - Artificial Intelligence 175 (3-4):814-847.
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  • A STIT Logic for Reasoning About Social Influence.Emiliano Lorini & Giovanni Sartor - 2016 - Studia Logica 104 (4):773-812.
    In this paper we propose a method for modeling social influence within the STIT approach to action. Our proposal consists in extending the STIT language with special operators that allow us to represent the consequences of an agent’s choices over the rational choices of another agent.
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  • A logical characterisation of qualitative coalitional games.Paul E. Dunne, Wiebe van der Hoek & Michael Wooldridge - 2007 - Journal of Applied Non-Classical Logics 17 (4):477-509.
    Qualitative coalitional games (QCGs) were introduced as abstract formal models of goal-oriented cooperative systems. A QCG is a game in which each agent is assumed to have some goal to achieve, and in which agents must typically cooperate with others in order to satisfy their goals. In this paper, we show how it is possible to reason about QCGs using Coalition Logic (CL), a formalism intended to facilitate reasoning about coalitional powers in game-like multiagent systems. We introduce a correspondence relation (...)
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  • Reasoning with protocols under imperfect information.Eric Pacuit & Sunil Simon - 2011 - Review of Symbolic Logic 4 (3):412-444.
    We introduce and study a PDL-style logic for reasoning about protocols, or plans, under imperfect information. Our paper touches on a number of issues surrounding the relationship between an agent’s abilities, available choices, and information in an interactive situation. The main question we address is under what circumstances can the agent commit to a protocol or plan, and what can she achieve by doing so?
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  • A logical formalization of the OCC theory of emotions.C. Adam, A. Herzig & D. Longin - 2009 - Synthese 168 (2):201-248.
    In this paper, we provide a logical formalization of the emotion triggering process and of its relationship with mental attitudes, as described in Ortony, Clore, and Collins’s theory. We argue that modal logics are particularly adapted to represent agents’ mental attitudes and to reason about them, and use a specific modal logic that we call Logic of Emotions in order to provide logical definitions of all but two of their 22 emotions. While these definitions may be subject to debate, we (...)
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  • Interactions between Knowledge, Action and Commitment within Agent Dynamic Logic.Renate A. Schmidt, Dmitry Tishkovsky & Ullrich Hustadt - 2004 - Studia Logica 78 (3):381-415.
    This paper considers a new class of agent dynamic logics which provide a formal means of specifying and reasoning about the agents activities and informational, motivational and practical aspects of the behaviour of the agents. We present a Hilbert-style deductive system for a basic agent dynamic logic and consider a number of extensions of this logic with axiom schemata formalising interactions between knowledge and commitment (expressing an agent s awareness of her commitments), and interactions between knowledge and actions (expressing no (...)
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  • Temporal agent programs.Jürgen Dix, Sarit Kraus & V. S. Subrahmanian - 2001 - Artificial Intelligence 127 (1):87-135.
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