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  1. Robot task planning and explanation in open and uncertain worlds.Marc Hanheide, Moritz Göbelbecker, Graham S. Horn, Andrzej Pronobis, Kristoffer Sjöö, Alper Aydemir, Patric Jensfelt, Charles Gretton, Richard Dearden, Miroslav Janicek, Hendrik Zender, Geert-Jan Kruijff, Nick Hawes & Jeremy L. Wyatt - 2017 - Artificial Intelligence 247 (C):119-150.
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  • Specifying and computing preferred plans.Meghyn Bienvenu, Christian Fritz & Sheila A. McIlraith - 2011 - Artificial Intelligence 175 (7-8):1308-1345.
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  • Problem awareness for skilled humanoid robots.Fulvio Mastrogiovanni, Antonello Scalmato, Antonio Sgorbissa & Renato Zaccaria - 2011 - International Journal of Machine Consciousness 3 (01):91-114.
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  • Hybrid planning for challenging construction problems: An Answer Set Programming approach.Faseeh Ahmad, Volkan Patoglu & Esra Erdem - 2023 - Artificial Intelligence 319 (C):103902.
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  • Selecting goals in oversubscription planning using relaxed plans.Angel García-Olaya, Tomás de la Rosa & Daniel Borrajo - 2021 - Artificial Intelligence 291 (C):103414.
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  • The Competition Section: a new paper category.A. G. Cohn, R. Dechter & G. Lakemeyer - 2011 - Artificial Intelligence 175 (9-10):iii.
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  • An Introduction to the Planning Domain Definition Language (PDDL): Book review. [REVIEW]Alfonso Emilio Gerevini - 2020 - Artificial Intelligence 280 (C):103221.
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  • State space search nogood learning: Online refinement of critical-path dead-end detectors in planning.Marcel Steinmetz & Jörg Hoffmann - 2017 - Artificial Intelligence 245 (C):1-37.
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  • Domain-independent planning for services in uncertain and dynamic environments.Eirini Kaldeli, Alexander Lazovik & Marco Aiello - 2016 - Artificial Intelligence 236 (C):30-64.
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  • Generating diverse plans to handle unknown and partially known user preferences.Tuan Anh Nguyen, Minh Do, Alfonso Emilio Gerevini, Ivan Serina, Biplav Srivastava & Subbarao Kambhampati - 2012 - Artificial Intelligence 190 (C):1-31.
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  • The deterministic part of the seventh International Planning Competition.Carlos Linares López, Sergio Jiménez Celorrio & Ángel García Olaya - 2015 - Artificial Intelligence 223 (C):82-119.
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  • Design and results of the Fifth Answer Set Programming Competition.Francesco Calimeri, Martin Gebser, Marco Maratea & Francesco Ricca - 2016 - Artificial Intelligence 231 (C):151-181.
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  • Proof Systems for Planning Under Cautious Semantics.Yuping Shen & Xishun Zhao - 2013 - Minds and Machines 23 (1):5-45.
    Planning with incomplete knowledge becomes a very active research area since late 1990s. Many logical formalisms introduce sensing actions and conditional plans to address the problem. The action language $\mathcal{A}_{K}$ invented by Son and Baral is a well-known framework for this purpose. In this paper, we propose so-called cautious and weakly cautious semantics for $\mathcal{A}_{K}$ , in order to allow an agent to generate and execute reliable plans in safety-critical environments. Intuitively speaking, cautious and weakly cautious semantics enable the agent (...)
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  • An extension of metric temporal planning with application to AC voltage control.Chiara Piacentini, Varvara Alimisis, Maria Fox & Derek Long - 2015 - Artificial Intelligence 229 (C):210-245.
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  • Agent planning programs.Giuseppe De Giacomo, Alfonso Emilio Gerevini, Fabio Patrizi, Alessandro Saetti & Sebastian Sardina - 2016 - Artificial Intelligence 231 (C):64-106.
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