DocumentCode
2458432
Title
Intelligent switching system methodology and its application in complex process control system
Author
Gao, Junwei ; Ye, Yangdong ; Shi, Tianyun ; Jiang, Qiuhua ; Jia, Limin
Author_Institution
Res. Inst. of Comput. Technol., Acad. Sinica, Beijing, China
fYear
2002
fDate
2002
Firstpage
12
Lastpage
17
Abstract
The switching system can be viewed as a kind of hybrid system because it has both continuous state variables and discrete state variables. Viewing the controller as hierarchical, then the switch strategy belongs to the higher hierarchy. It represents the intelligent factors and plays a key role in system performance. In this paper, the intelligent switching system methodology is researched, and the DESSC (Discrete event system supervisor and controller) is constructed with an intelligent method. A coke oven is used as the control object. Based on the analysis of the coke oven heating process and its state partition, the control strategy of intelligent switching systems is used which can effectively resolve process control problems of the complex system with large time-delay, realize coke oven automatic heating control, and good performance of control can be obtained.
Keywords
discrete event systems; fuzzy control; heating; hierarchical systems; intelligent control; ovens; process control; DESSC; automatic heating control; coke oven; complex process control system; continuous state variables; discrete event system supervisor; discrete state variables; fuzzy logic; hierarchical controller; hierarchical system; hybrid system; intelligent switching system methodology; system performance; time-delay; Automatic control; Control systems; Heating; Hybrid intelligent systems; Intelligent systems; Ovens; Process control; Switches; Switching systems; Temperature control;
fLanguage
English
Publisher
ieee
Conference_Titel
Artificial Intelligence Systems, 2002. (ICAIS 2002). 2002 IEEE International Conference on
Print_ISBN
0-7695-1733-1
Type
conf
DOI
10.1109/ICAIS.2002.1048042
Filename
1048042
Link To Document