[1] |
Ouelhadj D, Petrovic S. A survey of dynamic scheduling in manufacturing systems. Journal of Scheduling, 2009, 12(4):417-431 doi: 10.1007/s10951-008-0090-8 |
[2] |
Abumaizar R J, Svestka J A. Rescheduling job shops under random disruptions. International Journal of Production Research, 1997, 35(7):2065-2082 doi: 10.1080/002075497195074 |
[3] |
Sanmartí E, Espuña A, Puigianer L. Batch production and preventive maintenance scheduling under equipment failure uncertainty. Computer and Chemical Engineering, 1997, 21(10):1157-1168 doi: 10.1016/S0098-1354(96)00327-4 |
[4] |
Vieira G E, Herrmann J W, Lin E. Analytical models to predict the performance of a single-machine system under periodic and event-driven rescheduling strategies. International Journal of Production Research, 2000, 38(8):1899-1915 doi: 10.1080/002075400188654 |
[5] |
Roy R, Adesola B A, Thornton S. Development of a knowledge model for managing schedule disturbance in steel-making. International Journal of Production Research, 2004, 42(18):3975-3994 doi: 10.1080/00207540410001716453 |
[6] |
Dorn J. Case-based Reactive Scheduling. London, UK:Chapman & Hall, 1994. 32-50 |
[7] |
Dorn J. Cooperating scheduling systems. International Journal of Manufacturing Technology and Management, 2001, 3(6):570-585 doi: 10.1504/IJMTM.2001.001430 |
[8] |
Dorn J, Kerr R, Thalhammer G. Reactive scheduling:improving the robustness of schedules and restricting the effects of shop floor disturbances by fuzzy reasoning. International Journal of Human-Computer Studies, 1995, 42(6):687-704 doi: 10.1006/ijhc.1995.1031 |
[9] |
Ouelhadj D, Cowling P I, Petrovic S. Utility and stability measures for agent-based dynamic scheduling of steel continuous casting. In:Proceeding of the 2003 IEEE International Conference on Robotics & Automation. Taipei, China:IEEE, 2003. 175-180 |
[10] |
Ouelhadj D, Petrovic S, Cowling P I, Meisels A. Inter-agent cooperation and communication for agent-based robust dynamic scheduling in steel production. Advanced Engineering Informatics, 2004, 18(3):161-172 doi: 10.1016/j.aei.2004.10.003 |
[11] |
Guo D F, Li T K. Rescheduling algorithm for steelmaking-continuous casting. In:Proceeding of the 2nd IEEE Conference on Industrial Electronics and Applications. Harbin, China:IEEE, 2007. 1421-1425 |
[12] |
Li T K, Guo D F. Constraint-based approach for steelmaking-continuous casting rescheduling. In:Proceedings of the 20th International Conference on Industrial, Engineering and Other Applications of Applied Intelligent Systems. Kyoto, Japan:Springer, 2007. 1108-1117 |
[13] |
Zhang C S, Li T K, Wang B L, Zhang W X, Sun B. Dynamic modeling method for the scheduling problem in steelmaking-continuous casting with disturbance of product quality. Energy Procedia, 2011, 13:253-261 doi: 10.1016/S1876-6102(14)00454-8 |
[14] |
Worapradya K, Buranathiti T. Production rescheduling based on stability under uncertainty for continuous slab casting. In:Proceedings of ASIMMOD 2009. Bangkok, Thailand, 2009. 170-176 |
[15] |
Ozoe Y, Konishi M. Agent based scheduling of steel making processes. In:Proceedings of the 2009 International Conference on Networking, Sensing and Control. Okayama, Japan:IEEE, 2009. 278-281 |
[16] |
Chen K, Zheng Z, Liu Y, Gao X Q. Real-time scheduling method for steelmaking-continuous casting. In:Proceedings of the 2010 IEEE International Conference on Industrial Engineering and Engineering Management. Macao, China:IEEE, 2010. 2366-2370 |
[17] |
Mao K, Pan Q K, Pang X F, Chai T Y. An effective Lagrangian relaxation approach for rescheduling a steelmaking-continuous casting process. Control Engineering Practice, 2014, 30:66-77 |
[18] |
Mao K, Pan Q K, Pang X F, Chai T Y. A novel Lagrangian relaxation approach for a hybrid flowshop scheduling problem in the steelmaking-continuous casting process. European Journal of Operational Research, 2014, 236(1):51-60 doi: 10.1016/j.ejor.2013.11.010 |
[19] |
Tang L X, Zhao Y, Liu J Y. An improved differential evolution algorithm for practical dynamic scheduling in steelmaking-continuous casting production. IEEE Transactions on Evolutionary Computation, 2014, 18(2):209-25 doi: 10.1109/TEVC.2013.2250977 |
[20] |
Kumar P R. Re-entrant lines. Queueing Systems, 1993, 13(1-3):87-110 doi: 10.1007/BF01158930 |
[21] |
俞胜平, 郑秉霖, 柴天佑.炼钢连铸混合智能调度方法及其应用.华东理工大学学报(自然科学版), 2006, 32(7):844-848 http://www.cnki.com.cn/Article/CJFDTOTAL-HLDX200607024.htm
Yu Sheng-Ping, Zheng Bing-Lin, Chai Tian-You. Hybrid intelligent scheduling method and its application for steelmaking and continuous casting. Journal of East China University of Science and Technology (Natural Science Edition), 2006, 32(7):844-848 http://www.cnki.com.cn/Article/CJFDTOTAL-HLDX200607024.htm |
[22] |
Pang X F, Yu S P, Zheng B L, Chai T Y. Complete modification rescheduling method and its application for steelmaking and continuous casting. In:Proceedings of the 17th IFAC World Congress. Seoul, Korea:IFAC, 2008. 12837-12842 |