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  • Search: subject:"planning algorithm"
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Year of publication
Subject
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MCTS 2 Monte Carlo Tree Search 2 Multi-Agent System 2 distributed coordination 2 planning algorithm 2 real-time decision making 2 Agent-based modeling 1 Agentenbasierte Modellierung 1 Algorithm 1 Algorithmus 1 D star lite 1 DeNOC 1 Hybrid path planning algorithm 1 Lazy PRM technique 1 Modeling 1 Monte Carlo simulation 1 Monte-Carlo-Simulation 1 Operations Research 1 Operations research 1 Simulation 1 Theorie 1 Theory 1
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Online availability
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Free 2 CC license 1 Undetermined 1
Type of publication
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Article 3
Type of publication (narrower categories)
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Article 1 Article in journal 1 Aufsatz in Zeitschrift 1 research-article 1
Language
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English 3
Author
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Alexander-Reindorf, Nii-Emil 2 Cotae, Paul 2 Sudheer, A.P. 1 Sulaiman, Shifa 1
Published in...
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Games 2 Industrial Robot: the international journal of robotics research and application 1
Source
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ECONIS (ZBW) 1 EconStor 1 Other ZBW resources 1
Showing 1 - 3 of 3
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Collaborative cost multi-agent decision-making algorithm with Factored-Value Monte Carlo Tree Search and Max-Plus
Alexander-Reindorf, Nii-Emil; Cotae, Paul - In: Games 14 (2023) 6, pp. 1-19
In this paper, we describe the Factored Value MCTS Hybrid Cost-Max-Plus algorithm, a collection of decision-making algorithms (centralized, decentralized, and hybrid) for a multi-agent system in a collaborative setting that considers action costs. Our proposed algorithm is made up of two steps....
Persistent link: https://www.econbiz.de/10015471918
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Cover Image
Collaborative cost multi-agent decision-making algorithm with Factored-Value Monte Carlo Tree Search and Max-Plus
Alexander-Reindorf, Nii-Emil; Cotae, Paul - In: Games 14 (2023) 6, pp. 1-19
In this paper, we describe the Factored Value MCTS Hybrid Cost-Max-Plus algorithm, a collection of decision-making algorithms (centralized, decentralized, and hybrid) for a multi-agent system in a collaborative setting that considers action costs. Our proposed algorithm is made up of two steps....
Persistent link: https://www.econbiz.de/10014443307
Saved in:
Cover Image
Modeling of a wheeled humanoid robot and hybrid algorithm-based path planning of wheel base for the dynamic obstacles avoidance
Sulaiman, Shifa; Sudheer, A.P. - In: Industrial Robot: the international journal of robotics … 49 (2022) 6, pp. 1058-1076
Purpose Most of the conventional humanoid modeling approaches are not successful in coupling different branches of the tree-type humanoid robot. In this paper, a tree-type upper body humanoid robot with mobile base is modeled. The main purpose of this work is to model a non holonomic mobile...
Persistent link: https://www.econbiz.de/10014836120
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