Motion control usually includes the precise control of position/velocity and acceleration control while accurate acceleration control is not useful in many applications. Traditional position/velocity control is derived by feedback based, PID controllers. However the disturbance observer further increases the stability and robustness of the controller. In this paper we assess the effectiveness of the Disturbance Observer working together with a tuned PID controller. Velocity response is compared with and without the disturbance observer. The proposed disturbance observer based velocity controller produce better results than the traditional velocity controller
Proportional-Integral-Derivative (PID) control is the most widely used control method in industrial ...
This paper proposes a new nonlinear stability analysis for the acceleration-based robust position co...
A fundamental and open issue pertaining to human postural sway is how to deal with the uncertain, no...
Motion control usually includes the precise control of position/velocity and acceleration control w...
Motion control incorporates a range of challenges when it comes to the control of mechanical systems...
In this paper, disturbance rejection of DC motor PID trajectory control systems is enhanced for inde...
This research focuses on improvement of disturbance suppression even under existence of observation ...
The aim of this paper is to provide a new analysis and design tool for the acceleration based positi...
The trade-off between the noise-sensitivity and the performance of disturbance estimation is well-kn...
Mechanical (direct-drive) systems designed for high-speed and high-accuracy applications require con...
Mechanical (direct-drive) systems designed for high-speed and high-accuracy applications require con...
A new digital control solution to motion control problems is proposed. It is based on a unique activ...
This paper proposes new practical design tools for the robust motion control systems based on distur...
One of the main requirements for motion control systems is their robustness. There are several previ...
on the high speed, positioning system precision and reliability of their control mechanisms. Vibrati...
Proportional-Integral-Derivative (PID) control is the most widely used control method in industrial ...
This paper proposes a new nonlinear stability analysis for the acceleration-based robust position co...
A fundamental and open issue pertaining to human postural sway is how to deal with the uncertain, no...
Motion control usually includes the precise control of position/velocity and acceleration control w...
Motion control incorporates a range of challenges when it comes to the control of mechanical systems...
In this paper, disturbance rejection of DC motor PID trajectory control systems is enhanced for inde...
This research focuses on improvement of disturbance suppression even under existence of observation ...
The aim of this paper is to provide a new analysis and design tool for the acceleration based positi...
The trade-off between the noise-sensitivity and the performance of disturbance estimation is well-kn...
Mechanical (direct-drive) systems designed for high-speed and high-accuracy applications require con...
Mechanical (direct-drive) systems designed for high-speed and high-accuracy applications require con...
A new digital control solution to motion control problems is proposed. It is based on a unique activ...
This paper proposes new practical design tools for the robust motion control systems based on distur...
One of the main requirements for motion control systems is their robustness. There are several previ...
on the high speed, positioning system precision and reliability of their control mechanisms. Vibrati...
Proportional-Integral-Derivative (PID) control is the most widely used control method in industrial ...
This paper proposes a new nonlinear stability analysis for the acceleration-based robust position co...
A fundamental and open issue pertaining to human postural sway is how to deal with the uncertain, no...