DocumentCode
1931178
Title
A fuzzy adaptive set-point regulator design
Author
Yesil, Engin ; Guzelkaya, Mujde ; Eksin, Ibrahim
Author_Institution
Control Eng. Dept., Istanbul Tech. Univ., Maslak, Turkey
fYear
2012
fDate
20-22 Nov. 2012
Firstpage
311
Lastpage
316
Abstract
In this paper, an online tuned set-point regulator with a fuzzy mechanism is proposed. This proposed control structure exploits the advantages of one degree of freedom (1-DOF) and two degree of freedom (2-DOF) control forms. The blending mechanism of the set point regulator mix the filtered and pure reference signals so that the overall performance of the system is ameliorated with respect to load disturbance rejection and set-point following. In the proposed control structure, the PI controller is designed by using Internal Model Control (IMC) methodology. As a result of this chose, the proposed blending mechanism turns out to be a blending constant within the range of zero and one. Consequently, this blending constant can easily be tuned through a fuzzy inference mechanism, where the output signal is naturally the blending constant. First, the effectiveness of the proposed fuzzy adaptive set-point regulator is demonstrated and compared via simulations and then an experimental setup is design to show the applicability of the proposed control approach. The simulation and the experimental results show the benefit of the proposed method over the conventional counterparts.
Keywords
adaptive control; control system synthesis; fuzzy control; fuzzy reasoning; three-term control; 1-DOF control form; 2-DOF control form; IMC methodology; PI controller design; blending mechanism; fuzzy adaptive set-point regulator design; fuzzy inference mechanism; internal model control methodology; load disturbance rejection; one degree of freedom control form; online tuned set-point regulator; set point regulator; set-point following; two degree of freedom control form;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Intelligence and Informatics (CINTI), 2012 IEEE 13th International Symposium on
Conference_Location
Budapest
Print_ISBN
978-1-4673-5205-5
Electronic_ISBN
978-1-4673-5210-9
Type
conf
DOI
10.1109/CINTI.2012.6496781
Filename
6496781
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