[1]
|
Li X, McKee D J, Horberry T, Powell M S. The control room operator: the forgotten element in mineral process control. Minerals Engineering, 2011, 24(8): 894-902[2] van Vuuren M J J, Aldrich C, Auret L. Detecting changes in the operational states of hydrocyclones. Minerals Engineering, 2011, 24(14): 1532-1544[3] Wei D H, Craig I K. Grinding mill circuits —— a survey of control and economic concerns. International Journal of Mineral Processing, 2009, 90(1-4): 56-66[4] Duarte M, Sepúlveda F, Castillo A, Contreras A, Lazcano V, Giméez P, Castelli L. A comparative experimental study of five multivariable control strategies applied to a grinding plant. Powder Technology, 1999, 104(1): 1-28[5] Pomerleau A, Hodouin D, Desbiens A, Gagnon . A survey of grinding circuit control methods: from decentralized PID controllers to multivariable predictive controllers. Powder Technology, 2000, 108(2-3): 103-115[6] Ramasamy M, Narayanan S S, Rao Ch D P. Control of ball mill grinding circuit using model predictive control scheme. Journal of Process Control, 2005, 15(3): 273-283[7] Liang Lei, Li Zhen-Guo. Fuzzy-intelligent control arithmetic for the ore pulp level in mineral separation process. Metal Mine, 2009, 39(7): 103-105, 135 (梁蕾, 李振国. 选矿过程矿浆液位的模糊控制算法研究. 金属矿山, 2009, 39(7): 103-105, 135)[8] Chu Yun-Fei, Xu Wen-Li, Wang Jun, Wan Wei-Han. Averaging level control based on switching control. Journal of Tsinghua University (Science and Technology), 2005, 45(1): 107-110(楚云飞, 徐文立, 王峻, 万维汉. 基于切换控制的均匀液位控制. 清华大学学报(自然科学版), 2005, 45(1): 107-110)[9] Hu Dan, Yu Jun-Qi, Guo Chun-Yan. Study on fuzzy control arithmetic for classification pump-sump pulp level in beneficiation. Metal Mine, 2007, 37(9): 97-100(户丹, 于军琪, 郭春燕. 选矿分级泵池液位的模糊控制算法研究. 金属矿山, 2007, 37(9): 97-100)[10] Chai Tian-You, Ding Jin-Liang, Wang Hong, Su Chun-Yi. Hybrid intelligent optimal control method for operation of complex industrial processes. Acta Automatica Sinica, 2008, 34(5): 505-515(柴天佑, 丁进良, 王宏, 苏春翌. 复杂工业过程运行的混合智能优化控制方法. 自动化学报, 2008, 34(5): 505-515)[11] Sanchis R, Romero J A, Martín J M. A new approach to averaging level control. Control Engineering Practice, 2011, 19(9): 1037-1043[12] Safikhani H, Hajiloo A, Ranjbar M A. Modeling and multi-objective optimization of cyclone separators using CFD and genetic algorithms. Computers and Chemical Engineering, 2011, 35(6): 1064-1071[13] Tie Ming, Fan Yu-Shun, Chai Tian-You. Distributed simulation platform for optimizing control of mineral grinding process. Journal of System Simulation, 2008, 20(15): 4000- 4005(铁鸣, 范玉顺, 柴天佑. 磨矿流程优化控制的分布式仿真平台. 系统仿真学报, 2008, 20(15): 4000-4005)[14] Fileti A M F, Antunes A J B, Silva F V, Silveira V Jr, Pereira J A F R. Experimental investigations on fuzzy logic for process control. Control Engineering Practice, 2007, 15(9): 1149-1160[15] Precup R E, Hellendoorn H. A survey on industrial applications of fuzzy control. Computers in Industry, 2011, 62(3): 213-226[16] Zheng J M, Zhao S D, Wei S G. Application of self-tuning fuzzy PID controller for a SRM direct drive volume control hydraulic press. Control Engineering Practice, 2009, 17(12): 1398-1404[17] Lequin O, Gevers M, Mossberg M, Bosmans M, Triest L. Iterative feedback tuning of PID parameters: comparison with classical tuning rules. Control Engineering Practice, 2003, 11(9): 1023-1033
|