A new model Gm(s), defined by the four measurable parameters ultimate gain, ultimate frequency, amplitude of ultimate oscillation and dead-time, is obtained from tangent to the Nyquist curve at the critical point. This model represents the generalization of the Ziegler-Nichols process dynamics characterization method, for a large class of stable, integrating and unstable processes Gp(s). In the present paper, by applying time and amplitude scaling technique to the model Gm(s), a new tuning formulae are developed for the PI controller. These tuning formulae guarantee almost optimal performance/robustness tradeoff for a large class of processes with integral action
A modification of the PI setting of the Ziegler-Nichols closed loop tuningmethod is proposed. The mo...
This book presents a unified methodology for the design of PID controllers that encompasses the wide...
The magnitude optimum (MO) technique provides a non-oscillatory closed-loop response for a large cla...
This paper presents new tuning rules for PIcontrol of processes with essentially monotone step respo...
A method for tuning PI controller parameters, a prescribed maximum time delay error or a relative ti...
A modification of the PI setting of the Ziegler-Nichols closed loop tuning method is proposed. The m...
Abstract: PID Controller is used for tuning of three constants (P,I&D).It stabilize the system b...
A novel experimental method – here denoted the Good Gain method – for tuning PI controllers is propo...
Some analytical results concerning PI controller tuning based on integrator plus time delay models a...
This paper presents an analysis of the Ziegler-Nichols frequency re-sponse method for tuning PI cont...
This paper presents an analysis of the Ziegler-Nichols frequency response method for tuning PI contr...
This paper proposes that PI controllers should be tuned with balanced proportional and integral acti...
If the process contains a delay (dead time), the Nyquist criterion is well suited to derive a PI or ...
Based on a general controller evaluation method, taking both performance and robustness in different...
The control of stable processes using PI/PID controllers is by now a well established and understood...
A modification of the PI setting of the Ziegler-Nichols closed loop tuningmethod is proposed. The mo...
This book presents a unified methodology for the design of PID controllers that encompasses the wide...
The magnitude optimum (MO) technique provides a non-oscillatory closed-loop response for a large cla...
This paper presents new tuning rules for PIcontrol of processes with essentially monotone step respo...
A method for tuning PI controller parameters, a prescribed maximum time delay error or a relative ti...
A modification of the PI setting of the Ziegler-Nichols closed loop tuning method is proposed. The m...
Abstract: PID Controller is used for tuning of three constants (P,I&D).It stabilize the system b...
A novel experimental method – here denoted the Good Gain method – for tuning PI controllers is propo...
Some analytical results concerning PI controller tuning based on integrator plus time delay models a...
This paper presents an analysis of the Ziegler-Nichols frequency re-sponse method for tuning PI cont...
This paper presents an analysis of the Ziegler-Nichols frequency response method for tuning PI contr...
This paper proposes that PI controllers should be tuned with balanced proportional and integral acti...
If the process contains a delay (dead time), the Nyquist criterion is well suited to derive a PI or ...
Based on a general controller evaluation method, taking both performance and robustness in different...
The control of stable processes using PI/PID controllers is by now a well established and understood...
A modification of the PI setting of the Ziegler-Nichols closed loop tuningmethod is proposed. The mo...
This book presents a unified methodology for the design of PID controllers that encompasses the wide...
The magnitude optimum (MO) technique provides a non-oscillatory closed-loop response for a large cla...