FANG Li-jin, ZHOU Sheng-qi, WANG Yan. Structure Design of a New Variable Stiffness Joint[J]. Journal of Northeastern University Natural Science, 2017, 38(12): 1748-1753.
[1]王颜,房立金.机械式仿骨骼肌变刚度机构原理及设计[J].机器人,2015,37(4):506-512.(Wang Yan,Fang Li-jin.Principle and design of mechanically musculoskeletal variable-stiffness mechanism[J].Robot,2015,37(4) :506-512.) [2]Wolf S,Hirzinger G.A new variable stiffness design:matching requirements of the next robot generation[C]// IEEE International Conference on Robotics and Automation.Pasadena,2008:1741-1746. [3]Wolf S,Eiberger O,Hirzinger G.The DLR FSJ:energy based design of a variable stiffness joint[C]// IEEE International Conference on Robotics and Automation.Shanghai,2011:5082-5089. [4]Tsagarakis N G,Laffranchi M,Vanderborght B,et al.A compact soft actuator unit for small scale human friendly robots[C]// IEEE International Conference on Robotics and Automation.Kobe,2009:4356-4362. [5]Jafari A,Tsagarakis N G,Vanderborght B,et al.A novel actuator with adjustable stiffness (AwAS)[C]// IEEE/RSJ International Conference on Intelligent Robots and Systems.Taipei,2010:4201-4206. [6]Tsagarakis N G,Sardellitti I,Caldwell D G.A new variable stiffness actuator (CompAct-VSA):design and modeling[C]// IEEE/RSJ International Conference on Intelligent Robots and Systems.San Francisco,2011:378-383. [7]Kim B S,Song J B.Design and control of a variable stiffness actuator based on adjustable moment arm[J].IEEE Transactions on Robotics,2012,28(5):1145-1151. [8]Wang R J,Huang H P.An active-passive variable stiffness elastic actuator for safety robot systems[C]// IEEE/RSJ International Conference on Intelligent Robots and Systems.Taipei,2010:3664-3669. [9]Wang R,Huang H.Active variable stiffness elastic actuator:design and application for safe physical human-robot interaction[C]// 2010 IEEE International Conference on Robotics and Biomimetics (ROBIO).Tianjin,2010:1417-1422. [10]宋雅伟,魏文仪,钱竞光,等.肘关节屈伸肌群等速肌力测试与分析[J].中国组织工程研究,2008,12(11):2074-2078.(Song Ya-wei,Wei Wen-yi,Qian Jing-guang,et al.Test and analysis of muscle strength of the elbow flexion muscle group[J].China Tissue Engineering Research,2008,12(11):2074-2078.) [11]余慧杰.具有生理学特性的高精度人体肌肉疲劳建模及其在手臂屈伸运动中的应用研究[D].上海:复旦大学,2008.(Yu Hui-jie.Physiological characteristics of high-precision human muscle fatigue modeling and its application in the flexion and extension of the arm[D].Shanghai:Fudan University,2008.)(上接第1735页)