The dynamics of pneumatic systems are highly nonlinear, and there normally exists a large extent of model uncertainties; the precision motion trajectory tracking control of pneumatic cylinders is still a challenge. In this paper, two typical nonlinear controllers—adaptive controller and deterministic robust controller—are constructed firstly. Considering that they have both benefits and limitations, an adaptive robust controller (ARC) is further proposed. The ARC is a combination of the first two controllers; it employs online recursive least squares estimation (RLSE) to reduce the extent of parametric uncertainties, and utilizes the robust control method to attenuate the effects of parameter estimation errors, unmodeled dynamics, and distu...
Pneumatic muscle actuator (PMA) becomes famous and widely used in industrial automation process and ...
The Pneumatic Artificial Muscle (PAM) is a highly non-linear form of actuation that is characterized...
The Pneumatic Artificial Muscle (PAM) is a highly non-linear form of actuation that is characterized...
Due to the compressibility of air, non-linear characteristics, and parameter uncertainties of pneuma...
The dynamics of hydraulic systems are highly nonlinear. Aside from the nonlinear nature of hydraulic...
This paper studies the precision motion control of single-rod hydraulic actuators with accurate para...
This paper studies the high performance robust mo-tion control of electro-hydraulic servo-systems. T...
Two adaptive control schemes for nonlinear mechanical systems, proposed by Slotine and Li (1987, 198...
Precise control of a pneumatic muscle actuator is a challenging problem, due to its nonlinear and ti...
Every physical system is subject to certain degrees of model uncertainties, which makes the design o...
Servo control of pneumatic actuators is difficult due to the high compressibility and non-linear flo...
Servo control of pneumatic actuators is difficult due to the high compressibility and non-linear flo...
The research work presented in this dissertation focuses on some generalizations to adaptive robust ...
Abstract—In this brief, an adaptive robust control (ARC) scheme with compensation for nonlinearly pa...
In this paper the position control pneumatic actuator using a robust PID controller is presented. Th...
Pneumatic muscle actuator (PMA) becomes famous and widely used in industrial automation process and ...
The Pneumatic Artificial Muscle (PAM) is a highly non-linear form of actuation that is characterized...
The Pneumatic Artificial Muscle (PAM) is a highly non-linear form of actuation that is characterized...
Due to the compressibility of air, non-linear characteristics, and parameter uncertainties of pneuma...
The dynamics of hydraulic systems are highly nonlinear. Aside from the nonlinear nature of hydraulic...
This paper studies the precision motion control of single-rod hydraulic actuators with accurate para...
This paper studies the high performance robust mo-tion control of electro-hydraulic servo-systems. T...
Two adaptive control schemes for nonlinear mechanical systems, proposed by Slotine and Li (1987, 198...
Precise control of a pneumatic muscle actuator is a challenging problem, due to its nonlinear and ti...
Every physical system is subject to certain degrees of model uncertainties, which makes the design o...
Servo control of pneumatic actuators is difficult due to the high compressibility and non-linear flo...
Servo control of pneumatic actuators is difficult due to the high compressibility and non-linear flo...
The research work presented in this dissertation focuses on some generalizations to adaptive robust ...
Abstract—In this brief, an adaptive robust control (ARC) scheme with compensation for nonlinearly pa...
In this paper the position control pneumatic actuator using a robust PID controller is presented. Th...
Pneumatic muscle actuator (PMA) becomes famous and widely used in industrial automation process and ...
The Pneumatic Artificial Muscle (PAM) is a highly non-linear form of actuation that is characterized...
The Pneumatic Artificial Muscle (PAM) is a highly non-linear form of actuation that is characterized...