DocumentCode
1593140
Title
A Combustion Control Modeling of Coke Oven by Swarm-based Fuzzy System
Author
Ko, Ean T. ; Hwang, Seok K. ; Lee, Jin S.
Author_Institution
Dept. of Electr. & Control Maintenance, POSCO, Gwangyang
fYear
2006
Firstpage
2503
Lastpage
2507
Abstract
This paper proposes a swarm-based fuzzy system modeling technique for coke oven combustion control diagnosis. Coke is produced by the coke plant with charging coal into oven and supplying gas to carbonize it and it is used at the blast furnace plant in the steel making process. A conventional mathematical model for coke oven combustion control has been used to control the amount of gas input, but it does not work well because of highly nonlinear feature of coke plant. To solve this problem, swarm-based fuzzy system modeling technique is suggested to construct a diagnosis model of coke oven combustion control. Based on the measured input-output data pairs in the plant, the fuzzy rules are generated and the parameters are tuned by the particle swarm optimizer to increase the accuracy of the fuzzy system is operated. This system computes the proper amount of gas input taking the operation conditions of coke oven into account, and compares the computed result with the supplied gas input. The result of simulation shows that developed fuzzy system can be used as a diagnostic tool for coke oven combustion
Keywords
blast furnaces; coke; combustion; fuel processing industries; fuzzy control; steel manufacture; blast furnace plant; coke oven combustion control diagnosis; coke plant; fuzzy rules; gas input control; steel making process; swarm-based fuzzy system; Blast furnaces; Combustion; Electronic mail; Fuzzy systems; Heating; Mathematical model; Ovens; Particle measurements; Particle swarm optimization; Steel; coal; coke oven; fuzzy system model; particle swarm optimizer;
fLanguage
English
Publisher
ieee
Conference_Titel
SICE-ICASE, 2006. International Joint Conference
Conference_Location
Busan
Print_ISBN
89-950038-4-7
Electronic_ISBN
89-950038-5-5
Type
conf
DOI
10.1109/SICE.2006.314682
Filename
4108063
Link To Document