Searching for just a few words should be enough to get started. If you need to make more complex queries, use the tips below to guide you.
Article type: Research Article
Authors: Peng, XiaoHong* | Xie, ShiYi | Chen, Liang | Wang, DongYa
Affiliations: Guangdong Ocean University, Zhanjiang, Guangdong, China
Correspondence: [*] Corresponding author: XiaoHong Peng, Guangdong Ocean University, Zhanjiang, Guangdong, China. Tel.: +86 138 0282 0026; Fax: +86 0759 2383064; E-mail: lgdpxh@126.com.
Abstract: In view of the large lag of industrial furnace temperature, serious nonlinear, high order model, etc., we proposed a temperature prediction and control model of a joint two-layer, in which the PFC was taken as the supervisory layer, and the fuzzy logic control, FLC for short, was taken as the control layer. The model combines the advantages of PFC and FLC. The upper layer is to realize the advance regulation by using predictive functional control (PFC) to forecast the deviation of the system, and the lower layer is to realize fuel flow and air flow control by using the cascade fuzzy controller. The cascade fuzzy controller can handle multiple process control parameters, greatly reducing the number of fuzzy rules; and by using differential evolution algorithm (DE) to optimize the quantization factor and scaling factor of the membership function of fuzzy controller, which greatly improve the accuracy of prediction. After utilizing this model to process the control analyses of polystyrene industrial furnace temperature in a petrochemical enterprise in Zhanjiang, the result shows that the model has the advantages of fast tracking, accurate control, no overload and so on. The control effect is better than that of the fuzzy neural network control and the conventional PID control method.
Keywords: Predictive functional control, fuzzy logic control, differential evolution algorithm, industrial furnace, temperature control
DOI: 10.3233/JCM-170736
Journal: Journal of Computational Methods in Sciences and Engineering, vol. 17, no. 3, pp. 481-495, 2017
IOS Press, Inc.
6751 Tepper Drive
Clifton, VA 20124
USA
Tel: +1 703 830 6300
Fax: +1 703 830 2300
sales@iospress.com
For editorial issues, like the status of your submitted paper or proposals, write to editorial@iospress.nl
IOS Press
Nieuwe Hemweg 6B
1013 BG Amsterdam
The Netherlands
Tel: +31 20 688 3355
Fax: +31 20 687 0091
info@iospress.nl
For editorial issues, permissions, book requests, submissions and proceedings, contact the Amsterdam office info@iospress.nl
Inspirees International (China Office)
Ciyunsi Beili 207(CapitaLand), Bld 1, 7-901
100025, Beijing
China
Free service line: 400 661 8717
Fax: +86 10 8446 7947
china@iospress.cn
For editorial issues, like the status of your submitted paper or proposals, write to editorial@iospress.nl
如果您在出版方面需要帮助或有任何建, 件至: editorial@iospress.nl