Synchronization-based trajectory generation method for a robotic suit using neural oscillators for hip joint support in walking

Author:

Zhang Xia,Hashimoto Minoru

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference20 articles.

1. Power assist method based on phase sequence and muscle force condition for HAL;Kawatoto;Adv Robot,2005

2. Kazerooni H, Racine Jean Louis, Huang Lihua, Steger Ryan. On the control of the Berkeley Lower Extremity Exoskeleton (BLEEX). In: IEEE int conf on robotics and automation, Barcelona; April 2005. p. 4364–71.

3. Chu Andrew, Kazerooni H, Zoss Adam. On the biomimetic design of the Berkeley Lower Extremity Exoskeleton (BLEEX). In: IEEE int conf on robotic and automation, Barcelona; April 2005. p. 4356–63.

4. Kong Kyoungchul, Moon Hyosang, Hwang Beomsoo, Jeon Doyoung, Tomizuka Masayoshi. Robotic rehabilitation treatments: realization of aquatic therapy effects in exoskeleton systems. In: IEEE int conf on robotic and automation, Japan; May 2009. p. 1923–8.

5. Nakamura Takahiko, Saito Kazunari, Wang ZhiDong, Kosuge Kazuhiro, Tajika Masya. Human cooperative motion adapted wearable anti-gravity muscle support system. In: IEEE international conference on intelligent robot and system; 2006. p. 1843–8.

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