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  1. A unifying approach to temporal constraint reasoning.Peter Jonsson & Christer Bäckström - 1998 - Artificial Intelligence 102 (1):143-155.
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  • Computational complexity of relating time points with intervals.Peter Jonsson, Thomas Drakengren & Christer Bäckström - 1999 - Artificial Intelligence 109 (1-2):273-295.
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  • Disjunctions, independence, refinements.Mathias Broxvall, Peter Jonsson & Jochen Renz - 2002 - Artificial Intelligence 140 (1-2):153-173.
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  • A Temporal Logic for Reasoning about Processes and Plans.Drew McDermott - 1982 - Cognitive Science 6 (2):101-155.
    Much previous work in artificial intelligence has neglected representing time in all its complexity. In particular, it has neglected continuous change and the indeterminacy of the future. To rectify this, I have developed a first‐order temporal logic, in which it is possible to name and prove things about facts, events, plans, and world histories. In particular, the logic provides analyses of causality, continuous change in quantities, the persistence of facts (the frame problem), and the relationship between tasks and actions. It (...)
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  • Reasoning about partially ordered events.Thomas Dean & Mark Boddy - 1988 - Artificial Intelligence 36 (3):375-399.
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  • Reasoning about action in polynomial time.Thomas Drakengren & Marcus Bjäreland - 1999 - Artificial Intelligence 115 (1):1-24.
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  • On the complexity of qualitative spatial reasoning: A maximal tractable fragment of the Region Connection Calculus.Jochen Renz & Bernhard Nebel - 1999 - Artificial Intelligence 108 (1-2):69-123.
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