Research on Multivariable Fuzzy Dynamic Matrix Control Algorithm
DOI:
https://doi.org/10.54097/fcis.v4i3.11148Keywords:
The System of Distillation Column, Dynamic Matrix Control, Fuzzy Control, Variable Domain Fuzzy Control, Fuzzy Dynamic Matrix ControlAbstract
To improve the control quality of distillation tower systems that suffer from issues such as coupling, delay, and nonlinearity, traditional control methods have been ineffective. Consequently, this paper proposes using a variable-domain fuzzy dynamic matrix control algorithm for control system optimization. The traditional dynamic matrix control algorithm is augmented with a fuzzy controller, which is utilized to compensate for predicted output. The concept of variable domain is introduced to address the problems of poor adaptive ability and low control accuracy in the Fuzzy-DMC algorithm. Scaling factors are designed to adjust the fuzzy domain, enabling the fuzzy controller to compensate for predicted output even in the event of a significant model mismatch, resulting in improved control performance. The experimental results indicate that the algorithm proposed in this paper is superior to both traditional DMC and Fuzzy-DMC algorithms in terms of rise time, overshoot, and steady-state rate. In addition, this algorithm possesses a simple structure and does not modify the conventional DMC algorithm structure, making it theoretically applicable in practice.
Downloads
References
Wagn Rui. Temperature Control System for Ethylene Distillation Tower Reflux Section[J].Electrical engineering, 2022 (8):11-13.
Han yuxing, He Xiaoyang.Fuzzy decoupling control of alcohol distillation column [J]. Journal of Hunan University of Technology, 2008,22(6):72-75.
Zhang lin, Zhang Wenyuan.Design and Simulation Study of a Fuzzy Decoupling Control System[J].Computer Simulation. 2010, 27(8):118-121.
Du Lin, Cao Jiangtao.Temperature Control of Distillation Column Based on Improved Dynamic Neural Network [J]. Techniques of automation and applications.2017,36(1):25-31.
Li Ruihong, Liu Chaohui.In regards to the simulation study of optimal control of the bottom temperature in a distillation column [J]. Computer Simulation,2016,33(2):167-170.
Zheng Xin, Ke Jinchao,Chen Yameng.A Study on Multivariate Predictive Control Algorithm based on SVDF and Its Applications in Manufacturing Automation[J].Manufacturing Automation,2022,44(10):212-216.
Wang Dehua, Gu Tifeng, Shi Yao.The application of a pseudofeedforward dynamic matrix control algorithm in an SCR denitrification system [J]. Manufacturing Automation, 2023, 45 (7):200-204.
Zhou Hongbiao, Li Yang, Zhang Qingyu. Multi-variable adaptive variable universe fuzzy control for sewage treatment processes [J]. Instrumentation Technology and Sensors, 2023 (1):107-116.
Li Yangfegn, JIn XIuzhang,Yao ning.Variable Domain Fuzzy Control Based on Main Steam Temperature Multi-Models [J]. Journal of North China Electric Power University: Natural Science Edition,2023,50(2):109-117126.
Ren Yongpo, Liu Changliang.The application of Fuzzy-DMC algorithm in the main steam temperature system of power plants [J]. Instrumentation Customer,2013,20(4):56-59.