DocumentCode
2637934
Title
Tuning method of PID controller for desired damping coefficient
Author
Okada, Yohei ; Yamakawa, Yuji ; Yamazaki, Takanori ; Kurosu, Shigeru
Author_Institution
Toyohashi Univ. of Technol., Toyohashi
fYear
2007
fDate
17-20 Sept. 2007
Firstpage
795
Lastpage
799
Abstract
In the previous paper, we proposed the tuning method of PI controller for a plant model described by a first-order lag plus deadtime system based on a desired damping, and demonstrated its effectiveness and limitation by simulation studies. The PI parameters have been adjusted so that their influence on the damping was transparent. It is well known that the derivative action is effective in obtaining the desired damping. In this paper, of particular interest to us is how to tune PID controller to suppress overshoot. In tuning controllers it is often convenient to specify a damping coefficient of the closed system. For PID control, the integral time Td and the derivative time Td are kept fixed to degenerate the order of the closed-loop transfer function. This can be easily led to pole-zero cancellation. Thus, the only one parameter of PID controller to be adjusted now becomes the proportional gain kp. It can be concluded that the PID controller provides a much better response than the PI controller presented last year. The resultant graphical comparisons document how to give a guide line for tuning of PID controller.
Keywords
closed loop systems; poles and zeros; three-term control; transfer functions; PI controller; PID controller; closed-loop transfer function; desired damping coefficient; first-order lag plus deadtime system; pole-zero cancellation; tuning controllers; tuning method; Control systems; Damping; PD control; Pi control; Production systems; Proportional control; Systems engineering and theory; Three-term control; Transfer functions; Tuning; PID control; Padé approximation; first-order lag plus deadtime system; poles-zeros cancellation;
fLanguage
English
Publisher
ieee
Conference_Titel
SICE, 2007 Annual Conference
Conference_Location
Takamatsu
Print_ISBN
978-4-907764-27-2
Electronic_ISBN
978-4-907764-27-2
Type
conf
DOI
10.1109/SICE.2007.4421092
Filename
4421092
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