DocumentCode :
700644
Title :
A new method of direct PID controller design based on the principle of cascaded damping ratios
Author :
Schaedel, Herbert M.
Author_Institution :
Dept. of Inf. Technol., Fachhochschule Koln, Köln, Germany
fYear :
1997
fDate :
1-7 July 1997
Firstpage :
1265
Lastpage :
1271
Abstract :
The paper presents a universal method of direct controller design. Similar to second order systems cascaded damping ratios are defined for third order systems, which allow a direct controller design for maximum bandwidth of the control circuit. Using the low frequency parameters of the plant the parameters of the process controller (PI, PID) may be calculated for proportional plants of arbitrary lag order and dead-time. Large dead-time as well as nonminimum-phase characteristic can be handled without problems. A prescribed dynamic limiting of the correcting variable is easily accomplished by introducing a time lag to the controller. Simplified design rules are derived referring only to the average resident time and approximate order of the plant to be controlled. A simple procedure of parameter estimation based on the inflection tangent at the step response of the plant is outlined for parameter tuning using minimal process information.
Keywords :
PI control; cascade control; cascade systems; control system synthesis; damping; three-term control; vibration control; PI process controller; PID process controller; approximate plant order; arbitrary lag order; average resident time; cascaded damping ratio principle; control circuit; dead-time; design rules; direct PID controller design; dynamic limiting; inflection tangent; low-frequency parameters; maximum bandwidth; minimal process information; nonminimum-phase characteristic; parameter estimation; parameter tuning; proportional plants; second-order system cascaded damping ratios; step response; third-order systems; time lag; Approximation methods; Bandwidth; Damping; Mathematical model; Process control; Transfer functions; Tuning; PID control; linear systems; process control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (ECC), 1997 European
Conference_Location :
Brussels
Print_ISBN :
978-3-9524269-0-6
Type :
conf
Filename :
7082274
Link To Document :
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