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  1. Deontic Interpreted Systems.Alessio Lomuscio & Marek Sergot - 2003 - Studia Logica 75 (1):63-92.
    We investigate an extension of the formalism of interpreted systems by Halpern and colleagues to model the correct behaviour of agents. The semantical model allows for the representation and reasoning about states of correct and incorrect functioning behaviour of the agents, and of the system as a whole. We axiomatise this semantic class by mapping it into a suitable class of Kripke models. The resulting logic, KD45ni-j, is a stronger version of KD, the system often referred to as Standard Deontic (...)
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  • Representing the Zoo World and the Traffic World in the language of the causal calculator.Varol Akman, Selim T. Erdoğan, Joohyung Lee, Vladimir Lifschitz & Hudson Turner - 2004 - Artificial Intelligence 153 (1-2):105-140.
    The work described in this report is motivated by the desire to test the expressive possibilities of action language C+. The Causal Calculator (CCalc) is a system that answers queries about action domains described in a fragment of that language. The Zoo World and the Traffic World have been proposed by Erik Sandewall in his Logic Modelling Workshop—an environment for communicating axiomatizations of action domains of nontrivial size. -/- The Zoo World consists of several cages and the exterior, gates between (...)
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  • Nonmonotonic causal theories.Joohyung Lee, Vladimir Lifschitz & Hudson Turner - 2004 - Artificial Intelligence 153 (1-2):49-104.
    cuted actions. It has been applied to several challenge problems in the theory of commonsense knowledge. We study the relationship between this formalism and other work on nonmonotonic reasoning and knowl-.
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  • Deontic interpreted systems.Alessio Lomuscio & Marek Sergot - 2003 - Studia Logica 75 (1):63 - 92.
    We investigate an extension of the formalism of interpreted systems by Halpern and colleagues to model the correct behaviour of agents. The semantical model allows for the representation and reasoning about states of correct and incorrect functioning behaviour of the agents, and of the system as a whole. We axiomatise this semantic class by mapping it into a suitable class of Kripke models. The resulting logic, KD45n i-j, is a stronger version of KD, the system often referred to as Standard (...)
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  • Deontic database constraints, violation and recovery.José Carmo & Andrew J. I. Jones - 1996 - Studia Logica 57 (1):139 - 165.
    The paper discusses the potential value of a deontic approach to database specification. More specifically, some different types of integrity constraints are considered and a distinction is drawn between necessary (hard) and deontic (soft) constraints.Databases are compared with other normative systems. A deontic logic for database specification is proposed and the problems of how to react to, and of how to correct, or repair, a situation which arises through norm violation are discussed in the context of this logic. The limitations (...)
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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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  • A different approach to deontic logic: Deontic logic viewed as a variant of dynamic logic.J. Ch Meyer - 1988 - Notre Dame Journal of Formal Logic 29:109-136.
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