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铝电解设备、工艺与控制技术的综合仿真优化方法
引用本文:李劼,周乃君,丁凤其,邹忠,张文根,叶绍龙,彭胜光. 铝电解设备、工艺与控制技术的综合仿真优化方法[J]. 中南大学学报(自然科学版), 2002, 33(4): 356-359
作者姓名:李劼  周乃君  丁凤其  邹忠  张文根  叶绍龙  彭胜光
作者单位:中南大学,冶金科学与工程系,湖南,长沙,410083
基金项目:霍英东教育基金会第 7届高等院校青年教师基金资助项目(710 14 7)
摘    要:根据铝电解过程的特性 ,对铝电解设备、工艺和控制技术进行综合仿真优化 ,将这 3方面的模拟 (或仿真 )模型与算法有机地结合起来 ,建立了综合仿真优化模型与算法 ,并建立了铝电解在线综合仿真优化与闭环控制系统 .实践结果表明 :该系统不仅能实现常规的静态仿真计算 ,而且能实现在线闭环控制过程中的动态仿真计算 ,从而为铝电解设备、工艺及控制技术的综合优化提供了新的方法与手段

关 键 词:铝电解  仿真  优化  智能控制
文章编号:1005-9792(2002)04-0356-04
修稿时间:2001-12-24

Comprehensive simulation and optimization of aluminium reduction equipment, technology and control techniques
LI Jie,ZHOU Nai jun,DING Feng qi,ZOU Zhong,ZHANG Wen gen,YE Shao long,PENG Sheng guang. Comprehensive simulation and optimization of aluminium reduction equipment, technology and control techniques[J]. Journal of Central South University:Science and Technology, 2002, 33(4): 356-359
Authors:LI Jie  ZHOU Nai jun  DING Feng qi  ZOU Zhong  ZHANG Wen gen  YE Shao long  PENG Sheng guang
Abstract:Through the analysis on the characteristics of aluminium electrolytic process, the method of comprehensive simulation and optimization of aluminium reduction equipment, technology and control techniques is put forward. Based on modern aluminium metallurgical engineering science, models and algorithms in three aspects, i.e., aluminium reduction equipment, technology and controllers can be organically combined to establish the comprehensive simulation and optimization models and algorithms; an on line comprehensive simulation and closed loop control system can then be set up by integrating the simulation, optimization and control. The system can realize not only the conventional static simulation calculations, but also dynamic simulation calculations in the closed loop control process, which, on one hand, provide a new method for the comprehensive optimization of aluminium reduction equipment, technology and control techniques and, on the other hand, play the role of enhancing the performance of the intelligent control system for aluminium reduction cells.
Keywords:aluminium electrolysis  simulation  optimization  intelligent control
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