Design of a stabilizing controller for a ten-degree-of-freedom bipedal robot using linear quadratic regulator theory
2001 ◽
Vol 215
(1)
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pp. 27-43
Keyword(s):
This paper considers the design and evaluation of stabilizing controllers for a ten-degree-of-freedom (10 DOF) biped robot using linear quadratic optimal control techniques and reduced-order observers. The controllers are designed using approximate planar dynamical models for the sagittal and lateral planes. Experiments were carried out to test the control system when the biped robot was in the double-support phase and the robot was subject to external disturbances. Although the control system is based on single-support models, the experimental results have shown that the robot successfully kept its given posture under disturbances.
1970 ◽
Vol 7
(1)
◽
pp. 88-96
2014 ◽
Vol 2014
◽
pp. 1-8
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2019 ◽
Vol 10
(2)
◽
pp. 768
Keyword(s):
2011 ◽
Vol 6
(30)
◽
1979 ◽
Vol 101
(2)
◽
pp. 172-178
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