The magnitude optimum (MO) technique provides a non-oscillatory closed-loop response for a large class of process models. However, this technique is based on a transfer function model that requires precise process identification and extensive computations. In the present paper, it is shown that a close relation exists between multiple integrations of the process step response and the MO criterion. Due to this relation, the MO criterion can be more simply achieved. Some practical guidelines for performing multiple integrations and for re-tuning controller parameters are also given. © 1999 Elsevier Science Ltd. All rights reserved.SCOPUS: ar.jinfo:eu-repo/semantics/publishe
In this paper, an improved parameters tuning method of model-driven two degree of freedom PID contro...
A systematic tuning method is proposed to design the optimal proportional-integral-derivative (PID) ...
© 2017 American Scientific Publishers. All rights reserved. The single loop feedback control is comm...
The PID controller is the most common option in the realm of control applications and is dominant in...
Presented is an easy to use and broadly applicable method for tuning PID controllers for integrating...
The paper presents a tuning method for PID controllers with higher-order derivatives and higher-orde...
The rapid growth in the complexity of modern process plants both in terms of material flow and energ...
© 2015 Elsevier Ltd. All rights reserved.A multi-loop PID control system is widely used in process i...
The aim of this paper is to present analytic tuning rules which are as simple as possible and still ...
Nonminimum-phase processes with integrating or unstable dynamics are commonly encountered in practic...
A set of tuning rules for standard (integer-order) PID and fractional-order PID controllers for inte...
In this paper we propose a new automatic tuning technique for multiloop PID controllers applied to M...
This paper presents new tuning rules for PIcontrol of processes with essentially monotone step respo...
This book presents a unified methodology for the design of PID controllers that encompasses the wide...
This paper presents a new PID controller tuning formula constructed based on the Multi-Scale Control...
In this paper, an improved parameters tuning method of model-driven two degree of freedom PID contro...
A systematic tuning method is proposed to design the optimal proportional-integral-derivative (PID) ...
© 2017 American Scientific Publishers. All rights reserved. The single loop feedback control is comm...
The PID controller is the most common option in the realm of control applications and is dominant in...
Presented is an easy to use and broadly applicable method for tuning PID controllers for integrating...
The paper presents a tuning method for PID controllers with higher-order derivatives and higher-orde...
The rapid growth in the complexity of modern process plants both in terms of material flow and energ...
© 2015 Elsevier Ltd. All rights reserved.A multi-loop PID control system is widely used in process i...
The aim of this paper is to present analytic tuning rules which are as simple as possible and still ...
Nonminimum-phase processes with integrating or unstable dynamics are commonly encountered in practic...
A set of tuning rules for standard (integer-order) PID and fractional-order PID controllers for inte...
In this paper we propose a new automatic tuning technique for multiloop PID controllers applied to M...
This paper presents new tuning rules for PIcontrol of processes with essentially monotone step respo...
This book presents a unified methodology for the design of PID controllers that encompasses the wide...
This paper presents a new PID controller tuning formula constructed based on the Multi-Scale Control...
In this paper, an improved parameters tuning method of model-driven two degree of freedom PID contro...
A systematic tuning method is proposed to design the optimal proportional-integral-derivative (PID) ...
© 2017 American Scientific Publishers. All rights reserved. The single loop feedback control is comm...