首页 /研究 /Design of physical user–robot interactions for model identification of soft actuators on exoskeleton robots
OTHER

Design of physical user–robot interactions for model identification of soft actuators on exoskeleton robots

Masashi Hamaya, Takamitsu Matsubara, Tatsuya Teramae, Tomoyuki Noda, Jun Morimoto

发表年份
2019
引用次数
34
访问权限
开放获取

摘要

Recent breakthroughs in wearable robots, such as exoskeleton robots with soft actuators and soft exosuits, have enabled the use of safe and comfortable movement assistance. However, modeling and identification methods for soft actuators used in wearable robots have yet to be sufficiently explored. In this study, we propose a novel approach for obtaining accurate soft actuator models through the design of physical user–robot interactions for wearable robots, in which the user applies external forces to the robot. To obtain an accurate soft actuator model from the limited amount of data acquired through an interaction, we leverage an active learning framework based on Gaussian process regression. We conducted experiments using a two-degree-of-freedom upper-limb exoskeleton robot with four pneumatic artificial muscles (PAMs). Experimental results showed that physical interactions between the exoskeleton robot and the user were successfully designed to allow PAM models to be identified. Furthermore, we found that data acquired through an interaction could result in more accurate soft actuator models for the exoskeleton robots than data acquired without a physical interaction between the exoskeleton robot and the user.

关键词

ExoskeletonRobotActuatorWearable computerLeverage (statistics)Soft roboticsControl engineeringEngineeringComputer scienceArtificial intelligence

相关论文

查看 OTHER 分类全部论文