DocumentCode :
504747
Title :
Tuning of feedback type decoupling controller for two-dimensional thermal process based on VRFT method
Author :
Nakano, Masahiko ; Matsunaga, Nobutomo ; Okajima, Hiroshi ; Kawaji, Shigeyasu
Author_Institution :
Dept. of Comput. Sci. & Electr. Eng., Kumamoto Univ., Kumamoto, Japan
fYear :
2009
fDate :
18-21 Aug. 2009
Firstpage :
925
Lastpage :
930
Abstract :
Thermal distribution in manufacturing processes, which is observed in both steady and transient states, causes inferior quality. To suppress the thermal distribution, parameter tuning method appropriate to the real plant has been required. For the plant with strong thermal interaction, decoupling control would be effective from the view point of the tuning time reduction. However it is difficult to use the traditional feedforward type decoupler in industrial applications, because the decoupler has disadvantages, e.g. the system is not robust for disturbances, the decoupler is not proper in many case, and so on. To overcome the difficulties, we have proposed the temperature difference model (TDM) for thermal process and the decoupling controller based on the feedback structure. Focusing the construction of the decoupling system based on TDM, the decoupler can be obtained by virtual reference feedback tuning (VRFT) method, which is powerful offline tuning method of the controller. In this paper, a VRFT method of the new feedback type decoupler for MIMO system is proposed. The effectiveness of the VRFT for two-dimensional heat plate is evaluated by numerical examples.
Keywords :
MIMO systems; feedback; heating; manufacturing processes; temperature control; temperature distribution; transient analysis; MIMO system; VRFT method; feedback type decoupling controller; heat plate; manufacturing process; offline tuning; parameter tuning; steady state; temperature difference model; thermal distribution; thermal interaction; thermal process; transient state; tuning time reduction; virtual reference feedback tuning; Feedback; VRFT; decoupling control; parameter tuning; temperature difference model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
ICCAS-SICE, 2009
Conference_Location :
Fukuoka
Print_ISBN :
978-4-907764-34-0
Electronic_ISBN :
978-4-907764-33-3
Type :
conf
Filename :
5334621
Link To Document :
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