Uncertainty-Aware Ankle Exoskeleton Control
不确定性感知的踝关节外骨骼控制
机构 * Department of Mechanical Engineering, Northeastern University(东北大学机械工程系) ; College of Engineering, Northeastern University(东北大学工程学院) ; Khoury College of Computer Sciences, Northeastern University(东北大学计算机科学学院) ; Department of Electrical & Computer Engineering, Khoury College of Computer Sciences, and the Institute for Experiential Robotics, Northeastern University(计算机科学学院电子与计算机工程系及体验机器人研究所,东北大学) ; Woodruff School of Mechanical Engineering and the Institute for Robotics and Intelligent Machines, Georgia Institute of Technology(沃德夫机械工程学院及机器人与智能机器研究所,佐治亚理工学院) ; Department of Mechanical Engineering, the Department of Physical Therapy, Movement, and Rehabilitation Science, and the Institute for Experiential Robotics, Northeastern University(机械工程系、物理治疗、运动与康复科学系及体验机器人研究所,东北大学)
AI总结 提出一种不确定性感知控制框架,通过不确定性估计器自动识别不熟悉动作并关闭辅助,使踝关节外骨骼能在多种场景下安全运行,在线测试F1分数达89.2。