This paper studies the performance assessment of proportional-integral (PI) control loops in terms of rejecting input load disturbances. The direct synthesis (DS-d) method for disturbance rejection is adopted to design PI controller parameters. The lower bound of the integrated absolute error (IAE) is established, from closed-loop responses subject to step or other general types of input load disturbance changes. A DS-d IAE-based index is formulated by using the lower bound of the IAE as a performance benchmark. A novel seminonparametric method is proposed to estimate the required parameters for calculating the performance index. Simulation and experimental examples are provided to validate the performance benchmark and to demonstrate the e...
Abstract: The objective of this paper is to demonstrate an efficient method of tuning the PID contro...
Performance assessment and retuning techniques for proportional-integral-derivative (PID) controller...
Parameters of digital proportional-integral/proportional-integral-derivative controllers are usually...
In this paper, a method for the performance assessment of proportional-integral (PI) controllers for...
Proportional-integral (PI) or proportional-integral-derivative (PID) controllers are still by far th...
Abstract: Criteria based on disturbance rejection and system robustness are proposed to assess the p...
This paper assesses the performance of feedforward controllers for disturbance rejection in univaria...
In this paper we propose an algorithm for the load disturbance rejection performance assessment of a...
In industrial feedback control loops, setpoint changes are often in the form of step, ramp or other ...
This paper studies the performance assessment of linear controllers in univariate feedback control l...
In this paper we propose a methodology for the performance assessment of a PID controller applied to...
This work presents a new look at the existing data-based and non-intrusive PI (proportional-integral...
The output of the controller is said to exceed the input limits of the plant being controlled when a...
PID Controllers have different algorithms or methods in which the controller action is based on Erro...
This paper aims at assessing the setpoint tracking performance of PID control loops, under certain c...
Abstract: The objective of this paper is to demonstrate an efficient method of tuning the PID contro...
Performance assessment and retuning techniques for proportional-integral-derivative (PID) controller...
Parameters of digital proportional-integral/proportional-integral-derivative controllers are usually...
In this paper, a method for the performance assessment of proportional-integral (PI) controllers for...
Proportional-integral (PI) or proportional-integral-derivative (PID) controllers are still by far th...
Abstract: Criteria based on disturbance rejection and system robustness are proposed to assess the p...
This paper assesses the performance of feedforward controllers for disturbance rejection in univaria...
In this paper we propose an algorithm for the load disturbance rejection performance assessment of a...
In industrial feedback control loops, setpoint changes are often in the form of step, ramp or other ...
This paper studies the performance assessment of linear controllers in univariate feedback control l...
In this paper we propose a methodology for the performance assessment of a PID controller applied to...
This work presents a new look at the existing data-based and non-intrusive PI (proportional-integral...
The output of the controller is said to exceed the input limits of the plant being controlled when a...
PID Controllers have different algorithms or methods in which the controller action is based on Erro...
This paper aims at assessing the setpoint tracking performance of PID control loops, under certain c...
Abstract: The objective of this paper is to demonstrate an efficient method of tuning the PID contro...
Performance assessment and retuning techniques for proportional-integral-derivative (PID) controller...
Parameters of digital proportional-integral/proportional-integral-derivative controllers are usually...