In this paper, a combination of nonlinear gain and proportional integral derivative (NPID) controller was proposed to the trajectory tracking of a pneumatic positioning system. The nonlinear gain was employed to this technique in order to avoid overshoot when a relatively large gain is used to produce a fast response. This nonlinear gain can vary automatically either by increasing or decreasing depending on the error generated at each instant. Mathematical model of a pneumatic actuator plant was obtained by using system identification based on input and output of open-loop experimental data. An auto-regressive moving average with exogenous (ARMAX) model was used as a model structure of the system. The results of simulation and experimental ...
The present article describes the improvement of Self-regulation Nonlinear PID (SN-PID) controller. ...
This paper presents a new approach for improving the performance of the pneumatic positioning system...
In this paper, a nonlinear mathematical modeling based on fundamental physical derivation is present...
In this paper, a combination of nonlinear gain and proportional integral derivative (NPID) controlle...
This paper presents the pneumatic positioning system controlled by Enhanced Nonlinear PID (NPID) con...
Pneumatic actuators offer several advantages such as low cost, simple to maintain, high power to wei...
This paper investigates the robustness of the pneumatic positioning system controlled by Self-regula...
This paper investigates the robustness of the pneumatic positioning system controlled by Self-regula...
This paper investigates the robustness of the pneumatic positioning system controlled by Self-regula...
This paper presents an enhancement of nonlinear proportional-integral-derivative (PID) controller fo...
This paper presents an enhancement of nonlinear proportional-integral-derivative (PID) controller fo...
This paper presents an enhancement of nonlinear proportional-integral-derivative (PID) controller fo...
This paper presents the pneumatic positioning system controlled by Enhanced Nonlinear PID (NPID) con...
In this paper, a nonlinear mathematical modeling based on fundamental physical derivation is present...
he enhancement of nonlinear PID (N-PID) controller for a pneumatic positioning system is proposed to...
The present article describes the improvement of Self-regulation Nonlinear PID (SN-PID) controller. ...
This paper presents a new approach for improving the performance of the pneumatic positioning system...
In this paper, a nonlinear mathematical modeling based on fundamental physical derivation is present...
In this paper, a combination of nonlinear gain and proportional integral derivative (NPID) controlle...
This paper presents the pneumatic positioning system controlled by Enhanced Nonlinear PID (NPID) con...
Pneumatic actuators offer several advantages such as low cost, simple to maintain, high power to wei...
This paper investigates the robustness of the pneumatic positioning system controlled by Self-regula...
This paper investigates the robustness of the pneumatic positioning system controlled by Self-regula...
This paper investigates the robustness of the pneumatic positioning system controlled by Self-regula...
This paper presents an enhancement of nonlinear proportional-integral-derivative (PID) controller fo...
This paper presents an enhancement of nonlinear proportional-integral-derivative (PID) controller fo...
This paper presents an enhancement of nonlinear proportional-integral-derivative (PID) controller fo...
This paper presents the pneumatic positioning system controlled by Enhanced Nonlinear PID (NPID) con...
In this paper, a nonlinear mathematical modeling based on fundamental physical derivation is present...
he enhancement of nonlinear PID (N-PID) controller for a pneumatic positioning system is proposed to...
The present article describes the improvement of Self-regulation Nonlinear PID (SN-PID) controller. ...
This paper presents a new approach for improving the performance of the pneumatic positioning system...
In this paper, a nonlinear mathematical modeling based on fundamental physical derivation is present...