Fuzzy Sliding Mode Predictive Control of Air Flow Rate for a High-Speed High-Temperature Heat-Airflow Test System

被引:0
作者
Chaozhi Cai
Lubin Guo
Jiachen Liu
机构
[1] Hebei University of Engineering,School of Mechanical and Equipment Engineering
来源
International Journal of Aeronautical and Space Sciences | 2020年 / 21卷
关键词
High-speed and high-temperature heat-airflow; Air flow rate; Fuzzy control; Sliding mode control; Smith predictor;
D O I
暂无
中图分类号
学科分类号
摘要
To solve the problem of accurate control of air flow rate of a high-speed high-temperature heat-airflow test system, this paper introduces the working principle, establishes the mathematical model and analyzes the characteristics of the air supply subsystem. According to the characteristics of the air supply subsystem, such as time-varying parameters, time delay and disturbance, which are difficult to control accurately, a new fuzzy sliding mode predictive control algorithm is proposed based on fuzzy sliding mode control and Smith predictor. On this basis, the proposed control algorithm is simulated and studied. The results show that the proposed fuzzy sliding mode predictive control algorithm has good control performance. It can not only achieve high-performance tracking of step, slope, square wave and sinusoidal signals, but also can overcome the influence on the system caused by pure time delay, time-varying parameter and external disturbance.
引用
收藏
页码:806 / 815
页数:9
相关论文
共 68 条
[11]  
Cai C(2015)Application of fuzzy control in wind tunnel main airflow pressure auto-adjust system Ordnance Ind Autom 34 39-20
[12]  
Li Y(2003)Analysis of robustness of PID-GPC based on IMC structure Chin J Chem Eng 11 55-1112
[13]  
Akbar A(2006)Universal learning net-work and its application for nonlinear system with long time delay Comput Chem Eng 31 13-6565
[14]  
Saputra C(2012)Sliding mode predictive control of main steam pressure in coal-fired power plant boiler Chin J Chem Eng 20 1107-572
[15]  
Munir MM(2014)Position control of the induction motor using an adaptive sliding-mode controller and observers IEEE Trans Ind Electron 61 6556-552
[16]  
Khairurrijal L(2015)Static output feedback sliding mode control design via an artificial stabilizing delay IET Control Theory Appl 9 563-126
[17]  
Hao Z(2014)Discrete-time terminal sliding mode control systems based on Euler’s discretization IEEE Trans Autom Control 59 546-30
[18]  
Qiao Y(2017)Modeling and stability of electro-hydraulic servo of hydraulic excavator IOP Conf Ser Earth Environ Sci 94 012013-undefined
[19]  
Zhang C(1971)A new method of specifying the flow capacity of pneumatic fluid power valves Hydraul Pneum Power 17 120-undefined
[20]  
Gao J(2001)Indirect adaptive fuzzy sliding mode control: part I: fuzzy switching Fuzzy Set Syst 122 21-undefined