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Knowledge presentation by the MNSM-based controller for swimming motion of a snake-like robot

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【作者】 卢振利Xie YafeiXu HuigangBorovac BranislavLi Bin

【Author】 Lu Zhenli;Xie Yafei;Xu Huigang;Borovac Branislav;Li Bin;School of Electrical Engineering and Automation,Changshu Institute of Technology;State Key Laboratory of Robotics,Shenyang Institute of Automation,Chinese Academy of Sciences;School of Information and Electrical Engineering,China University of Mining and Technology;Faculty of Technical Sciences,University of Novi Sad;

【机构】 School of Electrical Engineering and Automation,Changshu Institute of TechnologyState Key Laboratory of Robotics,Shenyang Institute of Automation,Chinese Academy of SciencesSchool of Information and Electrical Engineering,China University of Mining and TechnologyFaculty of Technical Sciences,University of Novi Sad

【摘要】 A MNSM( mirror neuron system mechanism)-based controller is developed to present the swimming rhythm of a snake-like robot in Cartesian space. From engineering viewpoint,the proposed controller is composed of a neuron for rhythm angle and two neurons for motion knowledge in XY plane. The given knowledge is a rhythm curve for swimming motion of a snake-like robot. Experimental results show that the proposed controller can present the knowledge of swimming rhythm,which represents the corresponding control law to drive the snake-like robot to swim with different speeds and turning motion. This work provides a novel method to present the knowledge for swimming motion of snake-like robots.

【Abstract】 A MNSM( mirror neuron system mechanism)-based controller is developed to present the swimming rhythm of a snake-like robot in Cartesian space. From engineering viewpoint,the proposed controller is composed of a neuron for rhythm angle and two neurons for motion knowledge in XY plane. The given knowledge is a rhythm curve for swimming motion of a snake-like robot. Experimental results show that the proposed controller can present the knowledge of swimming rhythm,which represents the corresponding control law to drive the snake-like robot to swim with different speeds and turning motion. This work provides a novel method to present the knowledge for swimming motion of snake-like robots.

【基金】 Supported by the National Natural Science Foundation of China(No.61333016)
  • 【文献出处】 High Technology Letters ,高技术通讯(英文版) , 编辑部邮箱 ,2018年01期
  • 【分类号】TP242
  • 【被引频次】1
  • 【下载频次】62
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