Title :
Design and validation of a platform robot for determination of ankle impedance during ambulation
Author :
Rouse, Elliott J. ; Hargrove, Levi J. ; Peshkin, Michael A. ; Kuiken, Todd A.
Author_Institution :
Biomed. Eng. Dept., Northwestern Univ., Evanston, IL, USA
fDate :
Aug. 30 2011-Sept. 3 2011
Abstract :
In order to provide natural, biomimetic control to recently developed powered ankle prostheses, we must characterize the impedance of the ankle during ambulation tasks. To this end, a platform robot was developed that can apply an angular perturbation to the ankle during ambulation and simultaneously acquire ground reaction force data. In this study, we detail the design of the platform robot and characterize the impedance of the ankle during quiet standing. Subjects were perturbed by a 3° dorsiflexive ramp perturbation with a length of 150 ms. The impedance was defined parametrically, using a second order model to map joint angle to the torque response. The torque was determined using the inverted pendulum assumption, and impedance was identified by the least squares best estimate, yielding an average damping coefficient of 0.03±0.01 Nms/° and an average stiffness coefficient of 3.1±1.2 Nm/°. The estimates obtained by the proposed platform robot compare favorably to those published in the literature. Future work will investigate the impedance of the ankle during ambulation for powered prosthesis controller development.
Keywords :
biomimetics; damping; electric impedance; least squares approximations; medical robotics; nonlinear systems; pendulums; torque; 3° dorsiflexive ramp perturbation; ambulation; angular perturbation; ankle impedance; biomimetic control; damping coefficient; least squares best estimate; pendulum assumption; platform robot; powered ankle prostheses; powered prosthesis controller; stiffness coefficient; time 150 ms; torque; Biomechanics; Force; Humans; Impedance; Joints; Robots; Torque; Adult; Ankle; Electric Impedance; Equipment Design; Female; Humans; Male; Pressure; Robotics; Walking; Young Adult;
Conference_Titel :
Engineering in Medicine and Biology Society, EMBC, 2011 Annual International Conference of the IEEE
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-4121-1
Electronic_ISBN :
1557-170X
DOI :
10.1109/IEMBS.2011.6092017