动态矩阵控制算法在蓄热式加热炉中的应用仿真Simulation and application of dynamic matrix control algorithm in regenerative heating furnace
马翠红,王俊琦,孟凡伟
摘要(Abstract):
针对传统PID控制算法不能满足纯滞后、大惯性的蓄热式加热炉温度控制系统工艺需求的问题,提出基于动态矩阵控制的炉温控制算法。首先介绍动态矩阵控制的原理,然后将其运用在蓄热式加热炉的温度控制系统中,通过Matlab软件对炉膛温度模型进行仿真,最后将本算法与传统PID控制算法进行比较分析。仿真结果表明,应用动态矩阵控制算法对蓄热式加热炉温度进行控制时效果更佳,动态性能更优,是一种拥有广泛应用前景的控制算法。
关键词(KeyWords): 动态矩阵控制;PID控制;控制算法;蓄热式加热炉;温度控制系统;模型仿真
基金项目(Foundation): 国家自然科学基金资助项目(61171058)~~
作者(Author): 马翠红,王俊琦,孟凡伟
DOI: 10.16652/j.issn.1004-373x.2018.19.025
参考文献(References):
- [1]陈迪安,李春生,苗为人,等.大型在线液态出渣蓄热式高温硅钢加热炉设计研究和应用[J].矿冶,2013,22(z1):157-160.CHEN Di’an,LI Chunsheng,MIAO Weiren,et al. Design and application of large online liquid slag storage high temperature silicon steel heating furnace[J]. Mining and metallurgy,2013,22(S1):157-160.
- [2]布焕存.蓄热式高温空气燃烧技术的应用[J].钢铁研究学报,2005,17(5):1-6.BU Huancun. Application of regenerative high temperature air combustion technology[J]. Journal of steel research,2005,17(5):1-6.
- [3]刘承林.基于蓄热式燃烧技术的加热炉控制系统[D].天津:天津理工大学,2014.LIU Chenglin. Heating furnace control system based on regenerative combustion technology[D]. Tianjin:Tianjin University of Technology,2014.
- [4]石学勇.蓄热式加热炉的模糊控制器[J].冶金能源,2011,30(5):61-62.SHI Xueyong. Fuzzy controller of regenerative reheating furnace[J]. Metallurgical energy,2011,30(5):61-62.
- [5]董洪霞.动态矩阵控制算法的改进及其仿真研究[D].鞍山:辽宁科技大学,2012.DONG Hongxia. Improvement of dynamic matrix control algorithm and its simulation research[D]. Anshan:Liaoning University of Science and Technology,2012.
- [6]高强,李航.基于单变量与多变量系统的模型预测控制研究[J].计算机工程与设计,2013,34(9):3266-3272.GAO Qiang,LI Hang. Research on model predictive control based on single-variable and multivariable systems[J]. Computer engineering and design,2013,34(9):3266-3272.
- [7]甄子洋.预见控制理论及应用研究进展[J].自动化学报,2016,42(2):172-188.ZHEN Ziyang. Advances in predictive control theory and application[J]. Acta automatica Sinica,2016,42(2):172-188.
- [8]杨丽华,赵文杰.基于Matlab动态矩阵控制算法设计仿真[J].仪器仪表用户,2012,19(4):64-66.YANG Lihua,ZHAO Wenjie. Matlab dynamic matrix control algorithm design simulation[J]. Instrument user, 2012, 19(4):64-66.
- [9]侯立刚,徐利军,苏成利,等.基于紧格式线性化的无模型动态矩阵控制[J].控制工程,2013,20(2):246-249.HOU Ligang,XU Lijun,SU Chengli,et al. Model-free dynamic matrix control based on compact format linearization[J]. Control engineering,2013,20(2):246-249.
- [10]孙建平,齐园园.动态矩阵控制在电加热炉温度控制中的应用[J].计算机仿真,2013,30(6):386-388.SUN Jianping,QI Yuanyuan. Application of dynamic matrix control in temperature control of electric heating furnace[J].Computer simulation,2013,30(6):386-388.
- [11]赵春锋,孙兴朋,王东兴.基于Matlab/Simulink下加热炉传递函数的PID仿真试验[J].节能,2010,29(7):20-22.ZHAO Chunfeng,SUN Xingpeng,WANG Dongxing. PID simulation test of transfer function of heating furnace based on Matlab/Simulink[J]. Energy saving,2010,29(7):20-22.
- [12]王正林,王胜开,陈国顺,等.Matlab/Simulink与控制系统仿真[M].2版.北京:电子工业出版社,2008:223-228.WANG Zhenglin,WANG Shengkai,CHEN Guoshun,et al.Matlab/Simulink and control system simulation[M]. 2nd ed.Beijing:Publishing House of Electronics Industry,2008:223-228.