© 2019 IEEE. This paper proposes a novel controller framework for antagonistically driven pneumatic artificial muscle (PAM) actuators. The proposed controller can be stably configured in both torque-stiffness control and position-stiffness control modes. Three contributions are sequentially presented in constructing the framework: 1) A PAM force feedback controller with guaranteed stability is synthesized in a way so as to contend with nonlinear PAM characteristics; 2) a mathematical tool is developed to compute reference PAM forces, for a given set of desired joint torque and joint stiffness inputs; and 3) on top of the torque controller, a position control scheme is implemented and its stability analysis is given in the sense of Lyapunov....
A Pneumatic Muscle Actuator (PMA) consists of a cylindrical and isotropic flexible rubber tube, and ...
A Pneumatic Muscle Actuator (PMA) consists of a cylindrical and isotropic flexible rubber tube, and ...
As an important driver element, the pneumatic artificial muscle (PAM) is widely used in industrial a...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Pneumatic artificial muscles (PAMs) get widely adopted due to their similar properties compared with...
In this paper, two different torque control approaches for PMA-driven (PMA = Pneumatic muscle actuat...
The current research effort in the design of lightweight and safe robots is resulting in increased i...
The current research effort in the design of lightweight and safe robots is resulting in increased i...
The current research effort in the design of lightweight and safe robots is resulting in increased i...
The pneumatic artificial muscle (PAM) is a kind of flexible actuators used to simulate the character...
The pneumatic artificial muscle (PAM) is a kind of flexible actuators used to simulate the character...
The pneumatic artificial muscle is a kind of flexible actuators used to simulate the characteristics...
In this paper, two different torque control approaches for PMA-driven (PMA = Pneumatic muscle actuat...
This article addresses the problem of simultaneous and robust closed-loop control of joint stiffness...
A Pneumatic Muscle Actuator (PMA) consists of a cylindrical and isotropic flexible rubber tube, and ...
A Pneumatic Muscle Actuator (PMA) consists of a cylindrical and isotropic flexible rubber tube, and ...
A Pneumatic Muscle Actuator (PMA) consists of a cylindrical and isotropic flexible rubber tube, and ...
As an important driver element, the pneumatic artificial muscle (PAM) is widely used in industrial a...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Pneumatic artificial muscles (PAMs) get widely adopted due to their similar properties compared with...
In this paper, two different torque control approaches for PMA-driven (PMA = Pneumatic muscle actuat...
The current research effort in the design of lightweight and safe robots is resulting in increased i...
The current research effort in the design of lightweight and safe robots is resulting in increased i...
The current research effort in the design of lightweight and safe robots is resulting in increased i...
The pneumatic artificial muscle (PAM) is a kind of flexible actuators used to simulate the character...
The pneumatic artificial muscle (PAM) is a kind of flexible actuators used to simulate the character...
The pneumatic artificial muscle is a kind of flexible actuators used to simulate the characteristics...
In this paper, two different torque control approaches for PMA-driven (PMA = Pneumatic muscle actuat...
This article addresses the problem of simultaneous and robust closed-loop control of joint stiffness...
A Pneumatic Muscle Actuator (PMA) consists of a cylindrical and isotropic flexible rubber tube, and ...
A Pneumatic Muscle Actuator (PMA) consists of a cylindrical and isotropic flexible rubber tube, and ...
A Pneumatic Muscle Actuator (PMA) consists of a cylindrical and isotropic flexible rubber tube, and ...
As an important driver element, the pneumatic artificial muscle (PAM) is widely used in industrial a...