Ontology based knowledge representation technique, domain modeling languages and planners for robotic path planning: A survey
Tài liệu tham khảo
Akbari, 2015, Ontological physics-based motion planning for manipulation, 1
Provine, 2004, Ontology-based methods for enhancing autonomous vehicle path planning, Robot. Auton. Syst., 49, 123, 10.1016/j.robot.2004.07.020
S. Fratini, T. Nogueira, N. Policella, Integrating modeling and knowledge representation for combined task, resource and path planning in robotics, in: Workshop on Knowledge Engineering for Planning and Scheduling-27th International Conference on Automated Planning and Scheduling, ICAPS, Pittsburgh, USA, 2017.
Ong, 2015, Software testbed for developing and evaluating integrated autonomous systems, 1
F. Dvorak, A. Bit-Monnot, F. Ingrand, M. Ghallab, A flexible ANML actor and planner in robotics, in: Planning and Robotics (PlanRob) Workshop, ICAPS, 2014.
Chien, 2000, Aspen-automating space mission operations using automated planning and scheduling
Tenorth, 2017, Representations for robot knowledge in the knowrob framework, Artificial Intelligence, 247, 151, 10.1016/j.artint.2015.05.010
M. Milicic, Action, time and space in description logics, 2008.
Belouaer, 2010, Ontology based spatial planning for human-robot interaction, 103
Tenorth, 2011, Web-enabled robots, IEEE Roboot. Autom. Mag., 18, 58, 10.1109/MRA.2011.940993
Galindo, 2013, Inferring robot goals from violations of semantic knowledge, Robot. Auton. Syst., 61, 1131, 10.1016/j.robot.2012.12.007
Allen, 1990, Maintaining knowledge about temporal intervals, 361
Allen, 1991, Planning as temporal reasoning, KR, 91, 3
Zetzsche, 2008, Sensorimotor representation and knowledge-based reasoning for spatial exploration and localisation, Cogn. Process., 9, 283, 10.1007/s10339-008-0214-2
Ghallab, 1994, Representation and control in ixtet, a temporal planner, 61
Do, 2003, Sapa: A multi-objective metric temporal planner, J. Artif. Intell. Res., 20, 155, 10.1613/jair.1156
Halsey, 2004, Crikey-a temporal planner looking at the integration of scheduling and planning, 46
Richter, 2010, The LAMA planner: Guiding cost-based anytime planning with landmarks, J. Artificial Intelligence Res., 39, 127, 10.1613/jair.2972
Bidot, 2008, Plan repair in hybrid planning, 169
Nguyen, 2011, In search of a cost effective way to develop autonomous floor mapping robots, 107
Kunze, 2011, Simulation-based temporal projection of everyday robot object manipulation, 107
Low, 2002, Integrated planning and control of mobile robot with self-organizing neural network, 3870
Srivastava, 2014, Combined task and motion planning through an extensible planner-independent interface layer, 639