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  1. A lightweight epistemic logic and its application to planning.Martin C. Cooper, Andreas Herzig, Faustine Maffre, Frédéric Maris, Elise Perrotin & Pierre Régnier - 2021 - Artificial Intelligence 298 (C):103437.
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  • DEL-based epistemic planning: Decidability and complexity.Thomas Bolander, Tristan Charrier, Sophie Pinchinat & François Schwarzentruber - 2020 - Artificial Intelligence 287 (C):103304.
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  • Verification of multi-agent systems with public actions against strategy logic.Francesco Belardinelli, Alessio Lomuscio, Aniello Murano & Sasha Rubin - 2020 - Artificial Intelligence 285 (C):103302.
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  • Epistemic planning: Perspectives on the special issue.Vaishak Belle, Thomas Bolander, Andreas Herzig & Bernhard Nebel - 2023 - Artificial Intelligence 316 (C):103842.
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  • An action language for multi-agent domains.Chitta Baral, Gregory Gelfond, Enrico Pontelli & Tran Cao Son - 2022 - Artificial Intelligence 302 (C):103601.
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  • Arbitrary Public Announcement Logic with Memory.Alexandru Baltag, Aybüke Özgün & Ana Lucia Vargas Sandoval - 2022 - Journal of Philosophical Logic 52 (1):53-110.
    We introduce Arbitrary Public Announcement Logic with Memory (APALM), obtained by adding to the models a ‘memory’ of the initial states, representing the information before any communication took place (“the prior”), and adding to the syntax operators that can access this memory. We show that APALM is recursively axiomatizable (in contrast to the original Arbitrary Public Announcement Logic, for which the corresponding question is still open). We present a complete recursive axiomatization, that includes a natural finitary rule, and study this (...)
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  • Knowledge-based programs as building blocks for planning.Jorge A. Baier & Sheila A. McIlraith - 2022 - Artificial Intelligence 303 (C):103634.
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  • DEL-sequents for regression and epistemic planning.Guillaume Aucher - 2012 - Journal of Applied Non-Classical Logics 22 (4):337 - 367.
    (2012). DEL-sequents for regression and epistemic planning. Journal of Applied Non-Classical Logics: Vol. 22, No. 4, pp. 337-367. doi: 10.1080/11663081.2012.736703.
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  • Bisimulation and expressivity for conditional belief, degrees of belief, and safe belief.Mikkel Birkegaard Andersen, Thomas Bolander, Hans van Ditmarsch & Martin Holm Jensen - 2017 - Synthese 194 (7):2447-2487.
    Plausibility models are Kripke models that agents use to reason about knowledge and belief, both of themselves and of each other. Such models are used to interpret the notions of conditional belief, degrees of belief, and safe belief. The logic of conditional belief contains that modality and also the knowledge modality, and similarly for the logic of degrees of belief and the logic of safe belief. With respect to these logics, plausibility models may contain too much information. A proper notion (...)
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  • Autonomous agents modelling other agents: A comprehensive survey and open problems.Stefano V. Albrecht & Peter Stone - 2018 - Artificial Intelligence 258 (C):66-95.
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  • Knowledge-based programs as succinct policies for partially observable domains.Bruno Zanuttini, Jérôme Lang, Abdallah Saffidine & François Schwarzentruber - 2020 - Artificial Intelligence 288 (C):103365.
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  • A general multi-agent epistemic planner based on higher-order belief change.Hai Wan, Biqing Fang & Yongmei Liu - 2021 - Artificial Intelligence 301 (C):103562.
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  • The logic of gossiping.Hans van Ditmarsch, Wiebe van der Hoek & Louwe B. Kuijer - 2020 - Artificial Intelligence 286 (C):103306.
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  • Parameterized Complexity of Theory of Mind Reasoning in Dynamic Epistemic Logic.Iris van de Pol, Iris van Rooij & Jakub Szymanik - 2018 - Journal of Logic, Language and Information 27 (3):255-294.
    Theory of mind refers to the human capacity for reasoning about others’ mental states based on observations of their actions and unfolding events. This type of reasoning is notorious in the cognitive science literature for its presumed computational intractability. A possible reason could be that it may involve higher-order thinking. To investigate this we formalize theory of mind reasoning as updating of beliefs about beliefs using dynamic epistemic logic, as this formalism allows to parameterize ‘order of thinking.’ We prove that (...)
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  • Implicit, explicit and speculative knowledge.Hans van Ditmarsch, Tim French, Fernando R. Velázquez-Quesada & Yì N. Wáng - 2018 - Artificial Intelligence 256:35-67.
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  • Logics and collaboration.Liz Sonenberg - 2023 - Logic Journal of the IGPL 31 (6):1024-1046.
    Since the early days of artificial intelligence (AI), many logics have been explored as tools for knowledge representation and reasoning. In the spirit of the Crossley Festscrift and recognizing John Crossley’s diverse interests and his legacy in both mathematical logic and computer science, I discuss examples from my own research that sit in the overlap of logic and AI, with a focus on supporting human–AI interactions.
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  • Pluralistic ignorance in the bystander effect: informational dynamics of unresponsive witnesses in situations calling for intervention.Rasmus Kraemmer Rendsvig - 2014 - Synthese 191 (11):2471-2498.
    The goal of the present paper is to construct a formal explication of the pluralistic ignorance explanation of the bystander effect. The social dynamics leading to inaction is presented, decomposed, and modeled using dynamic epistemic logic augmented with ‘transition rules’ able to characterize agent behavior. Three agent types are defined: First Responders who intervene given belief of accident; City Dwellers, capturing ‘apathetic urban residents’ and Hesitators, who observe others when in doubt, basing subsequent decision on social proof. It is shown (...)
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  • Algorithmic Iteration for Computational Intelligence.Giuseppe Primiero - 2017 - Minds and Machines 27 (3):521-543.
    Machine awareness is a disputed research topic, in some circles considered a crucial step in realising Artificial General Intelligence. Understanding what that is, under which conditions such feature could arise and how it can be controlled is still a matter of speculation. A more concrete object of theoretical analysis is algorithmic iteration for computational intelligence, intended as the theoretical and practical ability of algorithms to design other algorithms for actions aimed at solving well-specified tasks. We know this ability is already (...)
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  • Dynamic term-modal logics for first-order epistemic planning.Andrés Occhipinti Liberman, Andreas Achen & Rasmus Kræmmer Rendsvig - 2020 - Artificial Intelligence 286:103305.
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  • Efficient multi-agent epistemic planning: Teaching planners about nested belief.Christian Muise, Vaishak Belle, Paolo Felli, Sheila McIlraith, Tim Miller, Adrian R. Pearce & Liz Sonenberg - 2022 - Artificial Intelligence 302 (C):103605.
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  • Rethinking epistemic logic with belief bases.Emiliano Lorini - 2020 - Artificial Intelligence 282 (C):103233.
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  • Planning-based knowing how: A unified approach.Yanjun Li & Yanjing Wang - 2021 - Artificial Intelligence 296 (C):103487.
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  • Complexity of multi-agent conformant planning with group knowledge.Yanjun Li - 2023 - Synthese 201 (4):1-30.
    In this paper, we propose a dynamic epistemic framework to capture the knowledge evolution in multi-agent systems where agents are not able to observe. We formalize multi-agent conformant planning with group knowledge, and reduce planning problems to model checking problems. We prove that multi-agent conformant planning with group knowledge is Pspace -complete on the size of dynamic epistemic models. We also consider the alternative Kripke semantics, and show that for each Kripke model with perfect recall and no miracles, there is (...)
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  • A dynamic epistemic framework for reasoning about conformant probabilistic plans.Yanjun Li, Barteld Kooi & Yanjing Wang - 2019 - Artificial Intelligence 268 (C):54-84.
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  • Metrics for Formal Structures, with an Application to Kripke Models and Their Dynamics.Dominik Klein & Rasmus K. Rendsvig - forthcoming - Journal of Symbolic Logic:1-21.
    The paper introduces a broad family of metrics applicable to finite and countably infinite strings, or, by extension, to formal structures serving as semantics for countable languages. The main focus is on applications to sets of pointed Kripke models, a semantics for modal logics. For the resulting metric spaces, the paper classifies topological properties including which metrics are topologically equivalent, providing sufficient conditions for compactness, characterizing clopen sets and isolated points, and characterizing the metrical topologies by a concept of logical (...)
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  • Convergence, Continuity and Recurrence in Dynamic Epistemic Logic.Dominik Klein & Rasmus K. Rendsvig - 2017 - In Alexandru Baltag, Jeremy Seligman & Tomoyuki Yamada (eds.), Logic, Rationality, and Interaction (LORI 2017, Sapporo, Japan). Springer. pp. 108-122.
    The paper analyzes dynamic epistemic logic from a topological perspective. The main contribution consists of a framework in which dynamic epistemic logic satisfies the requirements for being a topological dynamical system thus interfacing discrete dynamic logics with continuous mappings of dynamical systems. The setting is based on a notion of logical convergence, demonstratively equivalent with convergence in Stone topology. Presented is a flexible, parametrized family of metrics inducing the latter, used as an analytical aid. We show maps induced by action (...)
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  • Knowledge-based strategies for multi-agent teams playing against Nature.Dilian Gurov, Valentin Goranko & Edvin Lundberg - 2022 - Artificial Intelligence 309 (C):103728.
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  • The Undecidability of Quantified Announcements.T. Ågotnes, H. van Ditmarsch & T. French - 2016 - Studia Logica 104 (4):597-640.
    This paper demonstrates the undecidability of a number of logics with quantification over public announcements: arbitrary public announcement logic, group announcement logic, and coalition announcement logic. In APAL we consider the informative consequences of any announcement, in GAL we consider the informative consequences of a group of agents all of which are simultaneously making known announcements. So this is more restrictive than APAL. Finally, CAL is as GAL except that we now quantify over anything the agents not in that group (...)
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  • True lies.Thomas Ågotnes, Hans van Ditmarsch & Yanjing Wang - 2018 - Synthese 195 (10):4581-4615.
    A true lie is a lie that becomes true when announced. In a logic of announcements, where the announcing agent is not modelled, a true lie is a formula that becomes true when announced. We investigate true lies and other types of interaction between announced formulas, their preconditions and their postconditions, in the setting of Gerbrandy’s logic of believed announcements, wherein agents may have or obtain incorrect beliefs. Our results are on the satisfiability and validity of instantiations of these semantically (...)
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  • Resolving distributed knowledge.Thomas Ågotnes & Yì N. Wáng - 2017 - Artificial Intelligence 252 (C):1-21.
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  • Dynamic Consequence and Public Announcement.Andrés Cordón Franco, Hans van Ditmarsch & Angel Nepomuceno - 2013 - Review of Symbolic Logic 6 (4):659-679.
    In van Benthem (2008), van Benthem proposes a dynamic consequence relation defined as${\psi _1}, \ldots,{\psi _n}{ \models ^d}\phi \,{\rm{iff}}{ \models ^{pa}}[{\psi _1}] \ldots [{\psi _n}]\phi,$where the latter denotes consequence in public announcement logic, a dynamic epistemic logic. In this paper we investigate the structural properties of a conditional dynamic consequence relation$\models _{\rm{\Gamma }}^d$extending van Benthem’s proposal. It takes into account a set of background conditions Γ, inspired by Makinson (2003) wherein Makinson calls this reasoning ‘modulo’ a set Γ. In the (...)
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  • Game description language and dynamic epistemic logic compared.Thorsten Engesser, Robert Mattmüller, Bernhard Nebel & Michael Thielscher - 2021 - Artificial Intelligence 292 (C):103433.
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  • Recursively modeling other agents for decision making: A research perspective.Prashant Doshi, Piotr Gmytrasiewicz & Edmund Durfee - 2020 - Artificial Intelligence 279 (C):103202.
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  • Johan van Benthem on Logic and Information Dynamics.Alexandru Baltag & Sonja Smets (eds.) - 2014 - Cham, Switzerland: Springer International Publishing.
    This book illustrates the program of Logical-Informational Dynamics. Rational agents exploit the information available in the world in delicate ways, adopt a wide range of epistemic attitudes, and in that process, constantly change the world itself. Logical-Informational Dynamics is about logical systems putting such activities at center stage, focusing on the events by which we acquire information and change attitudes. Its contributions show many current logics of information and change at work, often in multi-agent settings where social behavior is essential, (...)
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  • Formal learning theory.Oliver Schulte - 2008 - Stanford Encyclopedia of Philosophy.
    Formal learning theory is the mathematical embodiment of a normative epistemology. It deals with the question of how an agent should use observations about her environment to arrive at correct and informative conclusions. Philosophers such as Putnam, Glymour and Kelly have developed learning theory as a normative framework for scientific reasoning and inductive inference.
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  • A Computational Learning Semantics for Inductive Empirical Knowledge.Kevin T. Kelly - 2014 - In Alexandru Baltag & Sonja Smets (eds.), Johan van Benthem on Logic and Information Dynamics. Springer International Publishing. pp. 289-337.
    This chapter presents a new semantics for inductive empirical knowledge. The epistemic agent is represented concretely as a learner who processes new inputs through time and who forms new beliefs from those inputs by means of a concrete, computable learning program. The agent’s belief state is represented hyper-intensionally as a set of time-indexed sentences. Knowledge is interpreted as avoidance of error in the limit and as having converged to true belief from the present time onward. Familiar topics are re-examined within (...)
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  • Logical Dynamics and Dynamical Systems.Rasmus Kraemmer Rendsvig - unknown
    This thesis is on information dynamics modeled using *dynamic epistemic logic*. It takes the simple perspective of identifying models with maps, which under a suitable topology may be analyzed as *topological dynamical systems*. It is composed of an introduction and six papers. The introduction situates DEL in the field of formal epistemology, exemplifies its use and summarizes the main contributions of the papers.Paper I models the information dynamics of the *bystander effect* from social psychology. It shows how augmenting the standard (...)
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