Design and Control of a Variable Stiffness Actuator Based on Adjustable Moment Arm

被引:106
作者
Kim, Byeong-Sang [1 ]
Song, Jae-Bok [1 ]
机构
[1] Korea Univ, Sch Mech Engn, Seoul 136713, South Korea
基金
新加坡国家研究基金会;
关键词
Adjustable moment arm; compliant joint; lever mechanism; variable stiffness actuator (VSA);
D O I
10.1109/TRO.2012.2199649
中图分类号
TP24 [机器人技术];
学科分类号
080202 ; 1405 ;
摘要
For tasks that require robot-environment interaction, stiffness control is important to ensure stable contact motion and collision safety. The variable stiffness approach has been used to address this type of control. We propose a hybrid variable stiffness actuator (HVSA), which is a variable stiffness unit design. The proposed HVSA is composed of a hybrid control module based on an adjustable moment-arm mechanism, and a drive module with two motors. By controlling the relative motion of gears in the hybrid control module, position and stiffness of a joint can be simultaneously controlled. The HVSA provides a wide range of joint stiffness due to the nonlinearity provided by the adjustable moment arm. Furthermore, the rigid mode, which behaves as a conventional stiff joint, can be implemented to improve positioning accuracy when a robot handles a heavy object. In this paper, the mechanical design features and related analysis are explained. We show that the HVSA can provide a wide range of stiffness and rapid responses according to changes in the stiffness of a joint under varying loads by experiments. The effectiveness of the rigid mode is verified by some experiments on position tracking under high-load conditions.
引用
收藏
页码:1145 / 1151
页数:7
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[31]   Lower-limb Exoskeleton Based on Variable Stiffness Drive [J].
Zhu Y. ;
Wu Q. ;
Chen B. ;
Zhao Z. .
Jiqiren/Robot, 2023, 45 (03) :257-266and312
[32]   Design and analysis of a variable stiffness Inside-Deployed Lamina Emergent Joint [J].
Xie, Zhongtian ;
Qiu, Lifang ;
Yang, Debin .
MECHANISM AND MACHINE THEORY, 2018, 120 :166-177
[33]   Energy efficient actuators with adjustable stiffness: a review on AwAS, AwAS-II and CompACT VSA changing stiffness based on lever mechanism [J].
Jafari, Amir ;
Tsagarakis, Nikos ;
Caldwell, Darwin .
INDUSTRIAL ROBOT-THE INTERNATIONAL JOURNAL OF ROBOTICS RESEARCH AND APPLICATION, 2015, 42 (03) :242-251
[34]   A Task Performance-Based sEMG-Driven Variable Stiffness Control Strategy for Upper Limb Bilateral Rehabilitation System [J].
Yang, Ziyi ;
Guo, Shuxiang ;
Liu, Yi ;
Kawanishi, Masahiko ;
Hirata, Hideyuki .
IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2023, 28 (02) :792-803
[35]   Design of an Adjustable Constant Force Mechanism Based on Integrated Magnet-beam Structures and an Adjustable Lever Mechanism [J].
Shao, Yixin ;
Wang, Zhi ;
Sun, Yu ;
Shi, Di ;
Feng, Yanggang ;
Liu, Fei ;
Ding, Xilun ;
Zhang, Wuxiang .
MECHANISM AND MACHINE THEORY, 2025, 209
[36]   Adaptive Command Filter Backstepping Sliding Mode Control for Variable Stiffness Exoskeleton With Input Saturation Constraint [J].
Zhu, Yanghui ;
Wu, Qingcong ;
Chen, Bai ;
Zhang, Qiang ;
Wu, Hongtao .
IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2024, 73
[37]   An EMG-Based Biomimetic Variable Stiffness Modulation Strategy for Bilateral Motor Skills Relearning of Upper Limb Elbow Joint Rehabilitation [J].
Ziyi Yang ;
Shuxiang Guo ;
Keisuke Suzuki ;
Yi Liu ;
Masahiko Kawanishi .
Journal of Bionic Engineering, 2023, 20 :1597-1612
[38]   An EMG-Based Biomimetic Variable Stiffness Modulation Strategy for Bilateral Motor Skills Relearning of Upper Limb Elbow Joint Rehabilitation [J].
Yang, Ziyi ;
Guo, Shuxiang ;
Suzuki, Keisuke ;
Liu, Yi ;
Kawanishi, Masahiko .
JOURNAL OF BIONIC ENGINEERING, 2023, 20 (04) :1597-1612
[39]   An innovative lever-based isolator with quasi-zero stiffness properties for applications in mechanical control systems [J].
Baduidana, Marcial ;
Yaleu, Thomas Bell Djuitchou ;
Nbendjo, Blaise Romeo Nana ;
Kenfack-Jiotsa, Aurelien .
JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING, 2025, 47 (09)