International audienceArtificial muscle is a new type of biomimetic actuator particularly promising for naturally compliant mechatronic and robotic systems. Due to their highly non-linear character, their accurate closed-loop positioning control is a true challenge. We report the design and the control of a wire-cable driven artificial muscle actuator inspired by the elbow natural musculature. We propose an original linear control approach deriving benefit from natural stiffness and damping of any artificial muscle. We show how a single I-linear controller can be a practical simple way for an accurate and robust closed-loop positioning control. Experimental results have been performed by using handmade pneumatic McKibben artificial muscles
Despite offering many advantages over traditional rigid actuators, soft pneumatic actuators suffer f...
Animals exploit soft structures to move smoothly and effectively in complex natural environments. Th...
: A dynamic model and control system of an artificial muscle is presented. The artificial muscle is ...
We analyze the possibility of taking advantage of artificial muscle’s own stiffness and damping, and...
Artificial muscles define a large category of actuators we propose to analyze in a systemic framewor...
Artificial muscles define a large category of actuators we propose to analyze in a systemic framewor...
grantor: University of TorontoOver the past two decades considerable progress has been mad...
The Festo air muscle is today one of the most known commercial version of the so-called McKibben pne...
International audiencePneumatic actuators have inherent compliance and hence they are very interesti...
International audiencePneumatic actuators have inherent compliance and hence they are very interesti...
International audiencePneumatic actuators have inherent compliance and hence they are very interesti...
The Festo air muscle is today one of the most known commercial version of the so-called McKibben pne...
In this paper, the tracking control problem of a biomimetic exoskeleton powered by a pair of pneumat...
In this paper, the tracking control problem of a biomimetic exoskeleton powered by a pair of pneumat...
In this paper, the tracking control problem of a biomimetic exoskeleton powered by a pair of pneumat...
Despite offering many advantages over traditional rigid actuators, soft pneumatic actuators suffer f...
Animals exploit soft structures to move smoothly and effectively in complex natural environments. Th...
: A dynamic model and control system of an artificial muscle is presented. The artificial muscle is ...
We analyze the possibility of taking advantage of artificial muscle’s own stiffness and damping, and...
Artificial muscles define a large category of actuators we propose to analyze in a systemic framewor...
Artificial muscles define a large category of actuators we propose to analyze in a systemic framewor...
grantor: University of TorontoOver the past two decades considerable progress has been mad...
The Festo air muscle is today one of the most known commercial version of the so-called McKibben pne...
International audiencePneumatic actuators have inherent compliance and hence they are very interesti...
International audiencePneumatic actuators have inherent compliance and hence they are very interesti...
International audiencePneumatic actuators have inherent compliance and hence they are very interesti...
The Festo air muscle is today one of the most known commercial version of the so-called McKibben pne...
In this paper, the tracking control problem of a biomimetic exoskeleton powered by a pair of pneumat...
In this paper, the tracking control problem of a biomimetic exoskeleton powered by a pair of pneumat...
In this paper, the tracking control problem of a biomimetic exoskeleton powered by a pair of pneumat...
Despite offering many advantages over traditional rigid actuators, soft pneumatic actuators suffer f...
Animals exploit soft structures to move smoothly and effectively in complex natural environments. Th...
: A dynamic model and control system of an artificial muscle is presented. The artificial muscle is ...