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Robot Navigation Strategy in Complex Environment Based on Episode Cognition

摘要The hippocampal formation of the brain contains a series of nerve cells related to environmental cognition and navigation.These cells can integrate their moment information and external perceptual information and acquire episodic cognitive memory.Through episodic cognition and memory,organisms can achieve autonomous navigation in complex environments.This paper mainly studies the strategy of robot episode navigation in complex environments.After exploring the environment,the robot obtains subjective environmental cognition and forms a cognition map.The grid cells information contained in the cognitive map can obtain the direction and distance of the target through vector calculation,which can get a shortcut through the inexperienced area.The synaptic connection of place cells in the cognitive map can be used as the topological relation-ship between episode nodes.When the target-oriented vector navigation encounters obstacles,the obstacles can be realized by setting closer sub-targets.Based on the known obstacle information obtained from boundary cells in the cognitive map,topological paths can be divided into multi-segment vector navigation to avoid encountering obstacles.This paper combines vector and topological navigation to achieve goal-oriented and robust navigation capability in a complex environment.

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作者 Jinsheng Yuan [1] Wei Guo [1] Zhiyuan Hou [2] Fusheng Zha [3] Mantian Li [1] Lining Sun [1] Pengfei Wang [1] 学术成果认领
作者单位 State Key Laboratory of Robotics and System,Harbin Institute of Technology(HIT),Harbin 150001,China [1] School of Mechanical and Electrical Engineering,Lanzhou University of Technology,Lanzhou 730050,China [2] State Key Laboratory of Robotics and System,Harbin Institute of Technology(HIT),Harbin 150001,China;Shenzhen Academy of Aerospace Technology,Shenzhen 518057,China [3]
栏目名称 RESEARCH ARTICLES
发布时间 2023-04-11
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