Mold breakout prediction in slab continuous casting based on combined method of GA-BP neural network and logic rules

被引:2
作者
Fei He
Lingying Zhang
机构
[1] Anhui University of Technology,School of Metallurgical Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2018年 / 95卷
关键词
Continuous casting; Breakout prediction; Mold; Neural network; Genetic algorithm; Logic rule;
D O I
暂无
中图分类号
学科分类号
摘要
Given advantages of artificial intelligent technology, the genetic algorithm (GA) and back propagation (BP) neural network is used to construct time series model for recognizing temperature change waveform of single thermocouple in mold breakout process. Based on breakout mechanism, the logic rules are used to construct spatial model of multi-thermocouples for identifying two-dimensional (2D) propagation behavior of the sticker. Time series model based on GA-BP neural network and spatial model based on logic rules form a new breakout prediction method. And the simulation and field test of this method are carried out for validating its performance. Simulation results of time series model show that the GA-BP neural network has better recognition precision than BP neural network for sticking temperature pattern of single thermocouple. And simulation results of spatial model show that it can predict all stickers accurately and timely, with no missed alarm and false alarm. Furthermore, field test results show that this breakout prediction method has detection ratio of 100% and a lower false alarm frequency (0.1365% times/heat), which is better than actual breakout prediction system used in continuous casting production. So the combined method of GA-BP neural network and logic rules is feasible and effective in breakout prediction and can be used in more intelligently industrial process.
引用
收藏
页码:4081 / 4089
页数:8
相关论文
共 35 条
[1]  
Lukyanov SI(2015)Intelligent system for prediction of liquid metal breakouts under a mold of slab continuous casting machines Int J Adv Manuf Technol 79 1861-1868
[2]  
Suspitsyn ES(2015)Development and application of mould breakout prediction system with online thermal map for steel continuous casting Ironmak Steelmak 42 194-208
[3]  
Krasilnikov SS(2008)Algorithm for prevention of molten steel sticking onto mold in continuous casting process Metalurgija 47 47-50
[4]  
Shvidchenko DV(2002)New approaches to breakout prediction Steel Times Int 26 23-26
[5]  
He F(2017)Computer vision detection of mold breakout in slab continuous casting using an optimized neural network Int J Adv Manuf Technol 88 557-564
[6]  
He DF(2014)Adaptive control system for continuous steel casting based on neural networks and fuzzy logic Neurocomputing 125 236-245
[7]  
Deng ZH(2016)Mould temperature change and propagation behavior of sticking-type breakout during continuous casting J Iron Steel Res 28 27-32
[8]  
Xu AJ(2005)Application and optimization of mould breakout prevention technology Steelmak 21 17-19
[9]  
Tian NY(2015)Research progress on continuous casting crystallizer breakout prediction models Foundry Technol 36 1528-1535
[10]  
Blazevic D(undefined)undefined undefined undefined undefined-undefined