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  4. On the stiffness analysis of a cable driven leg exoskeleton
 
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On the stiffness analysis of a cable driven leg exoskeleton

Source
IEEE International Conference on Rehabilitation Robotics
ISSN
19457898
Date Issued
2017-08-11
Author(s)
Sanjeevi, N. S.S.
Vashista, Vineet  
DOI
10.1109/ICORR.2017.8009290
Abstract
Robotic systems are being used for gait rehabilitation of patients with neurological disorder. These devices are externally powered to apply external forces on human limbs to assist the leg motion. Patients while walking with these devices adapt their walking pattern in response to the applied forces. The efficacy of a rehabilitation paradigm thus depends on the human-robot interaction. A cable driven leg exoskeleton (CDLE) use actuated cables to apply external joint torques on human leg. Cables are lightweight and flexible but can only be pulled, thus a CDLE requires redundant cables. Redundancy in CDLE can be utilized to appropriately tune a robot's performance. In this work, we present the stiffness analysis of CDLE. Different stiffness performance indices are established to study the role of system parameters in improving the human-robot interaction.
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URI
http://repository.iitgn.ac.in/handle/IITG2025/22410
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