以山东莱钢1号高炉和山西临钢6号高炉在线采集的[Si]时间序列为样本空间,容量为1000炉数据,利用相空间重构技术和G-P算法,得出莱钢1号高炉和临钢6号高炉冶炼过程的混沌吸引子的饱和关联维数分别约为3.36和3.12.由高炉冶炼过程混沌吸引子的饱和关联维数存在且为分数,可证明两座高炉冶炼过程存在混沌特性.
参考文献
[1] | Lorenz E N. J Atmospheric Sci, 1963; 20:130 |
[2] | Huang R S. Chaos and its Application. Hubei: Wuhan University Press, 2001:112(黄润生.混沌及其应用.湖北:武汉大学出版社,2001:112) |
[3] | Packard N H, Grutchfield J P, Farmer J D, Shaw R S.Phys Rev Lett, 1980; 45(9): 712 |
[4] | Takens F. Lecture Notes in Mathematics, 1981; 898:366 |
[5] | Committee of National Natural Science Foundation of China. Automatic Science and Technology-The Research Report on Development Stratagem of Natural Science Subject. Beijing: Science Press, 1995:132(国家自然科学基金委员会.自动化科学与技术-自然科学学科发展战略调研报告.北京:科学出版社,1995:132) |
[6] | Rosenstein M T, Collins J J, De Luca C J. Physica D,1994; 73(1): 82 |
[7] | Jang Y D, Wu Z Q, Chen Y Q, Jiang Y. J University of Science and Technology Beijing, 2002; 24(3): 295(江亚东,吴竹清,陈因颀,江月.北京科技大学学报,2002;24(3):295) |
[8] | Zhong K D, Hu G S. Digital Signal Disposal, Beijing: Tsinghua University Press, 1988:117(宗孔德,胡广书.数字信号处理,北京:清华大学出版社,1988:117) |
[9] | Grassberger P, Procaccia I. Physica D, 1983; 9(3): 189 |
[10] | Liu X G, Liu X Z, Jiang M H, Wu X F, Chen Y M, Zhang X J, Chen T J. Metallurgical Industry Automation, 2002;26(6): 15(刘祥官,刘显著,蒋美华,吴晓峰,陈玉明,张晓军,陈铁军冶金自动化,2002;26(6):15) |
[11] | Liu X G, Liu F. Optimization and Intelligent Control System of BF Ironmaking Process, Beijing: Metallurgy Industry Press, 2003:51(刘祥官,刘芳.高炉炼铁过程优化与智能控制系统,北京:冶金工业出版社,2003:51) |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%