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Brain-inspired Intelligent Robotics: Theoretical Analysis and Systematic Application 期刊论文
Machine Intelligence Research, 2023, 卷号: 20, 期号: 1, 页码: 1-18
Authors:  Hong Qiao
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Brain-inspired intelligent robot  software and hardware  decision making  muscle control  cognitive intelligence  
面向脑卒中患者的手部运动功能智能化定量评价研究 学位论文
, 2022
Authors:  李晨光
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手部运动功能定量评价,运动学分析,数据增广,高斯混合模型,图卷 积网络  
面向助力的手部外骨骼设计与人机交互控制研究 学位论文
, 2022
Authors:  李厚成
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手部助力外骨骼,有效性定量评估,自抗扰控制,主动控制  
基于串联弹性驱动器的关节自对准食指外骨骼设计与分析 学位论文
, 北京: 中国科学院大学, 2022
Authors:  孙宁
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食指外骨骼, 关节自对准机构, 串联弹性驱动器, 外骨骼-指骨连接装置  
Constructing Constraint Force Field in Musculoskeletal Robot by Co-optimizing Muscle Arrangements and Constant Activations 会议论文
, PADUA,Italy, 2022-7-18
Authors:  Zhong SL(钟汕林);  Zhou JJ(周俊杰);  Wu W(吴伟)
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Musculoskeletal robot  Constraint Force Field  High precision  Control Schemes of robot  
A novel event-triggered adaptive tracking control framework for a manipulator with aperiodic neural network estimation 期刊论文
Assembly Automation, 2022, 页码: 1-16
Authors:  Gao jie
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Motor-Cortex-Like Recurrent Neural Network and Multitask Learning for the Control of Musculoskeletal Systems 期刊论文
IEEE TRANSACTIONS ON COGNITIVE AND DEVELOPMENTAL SYSTEMS, 2022, 卷号: 14, 期号: 2, 页码: 424-436
Authors:  Chen, Jiahao;  Qiao, Hong
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Muscles  Musculoskeletal system  Robots  Statistics  Sociology  Recurrent neural networks  Neurons  Biologically inspired  motor cortex  muscle synergy  musculoskeletal system  neuromuscular control  recurrent neural network (RNN)  
融合自适应神经网络的机器人模型预测控制方法研究 学位论文
工学博士, 中国科学院自动化研究所: 中国科学院自动化研究所, 2022
Authors:  康二龙
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机器人控制  模型预测控制  自适应神经网络  机械臂  最优控制理论  
肌肉骨骼机器人神经启发式分层运动学习研究 学位论文
工学博士, 中国科学院自动化研究所: 中国科学院自动化研究所, 2022
Authors:  周俊杰
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肌肉骨骼机器人系统  神经启发式算法  分层运动学习  行为决策  
Tracking of Uncertain Robotic Manipulators Using Event-Triggered Model Predictive Control With Learning Terminal Cost 期刊论文
IEEE TRANSACTIONS ON AUTOMATION SCIENCE AND ENGINEERING, 2022, 页码: 15
Authors:  Kang, Erlong;  Qiao, Hong;  Chen, Ziyu;  Gao, Jie
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Model predictive control  robotic manipulator  leaning terminal cost  neural networks  event-triggered mechanism  unknown dynamics