Journal of Shanghai Jiaotong University ›› 2015, Vol. 49 ›› Issue (05): 708-713.
• Mechanical instrumentation engineering • Previous Articles Next Articles
LI Cheng,LI Shuang,FENG Yiping,RONG Gang
Received:
2014-06-16
CLC Number:
LI Cheng,LI Shuang,FENG Yiping,RONG Gang. Scheduling Flexible Manufacturing System Based on Timed Petri Net and Heuristic Search[J]. Journal of Shanghai Jiaotong University, 2015, 49(05): 708-713.
[1]Lei H, Xing K Y, Han L B, et al. Deadlockfree scheduling for flexible manufacturing systems using Petri net and heuristic search [J]. Computers and Industrial Engineering, 2014, 72: 297305.[2]Caumond A, Lacomme P, Moukrim A, et al. An MILP for scheduling problems in an FMS with one vehicle [J]. European Journal of Operational Research, 2009, 199(3): 706722.[3]Prakash A, Felix T S, Deshmukh S G. FMS scheduling with knowledge based genetic algorithm[J]. Expert System with Applications, 2011, 38(4): 31613171. [4]Adibi M A, Zandieh M, Amiri M. Multiobjective scheduling of dynamic job shop using varivable neighborhood search [J]. Expert System with Applications, 2010, 37(1): 282287.[5]Yan M M, Zhong C F. A deadlock prevention policy for a class of Petri net models of flexible manufacturing system[J]. International Journal of Production Research, 2011, 49(24): 73797396.[6]Moslehi G, Mahnam M. A Pareto approach to multiobjective flexible jobshop scheduling problem using particle swarm optimization and local search [J]. International Journal of Production Economics, 129(1): 1422.[7]Li Z W, Liu G Y, Hanisch H M, et al. Deadlock prevention based on structure reuse of Petri net supervisors for flexible manufacturing system [J]. IEEE Transactions on Systems, Man and Cybernetics, 2012, 42(1): 178191.[8]Xiong H H, Zhou M C. Scheduling ofsemiconductor test facility via Petri Nets and hybrid heuristic search [J]. Semiconductor Manufacturing, 1998, 11(3): 384393.[9]Yu S, Reyes A, Cang S, et al. Combined petri netmodelling and AIbased heuristic hybrid search forflexiblemanufacturing systems—Part 2. Heuristic hybrid search[J]. Computers and Industrial Engineering, 2003, 44(4): 545566.[10]Lee J, Lee J S. Heuristic search for scheduling flexible manufacturing systems using lower bound reachability matrix [J]. Computers and Industrial Engineering, 2010, 59(4): 799806.[11]Huang B, Jiang R X, Zhang G X. Search strategy for scheduling flexible manufacturing systems simultaneously using admissible heuristic functions and nonadmissibleheuristic functions [J]. Computers and Industrial Engineering, 2014, 71: 2126.[12]Yu S, Reyes A, Cang S, et al. Combined Petri net modelling and AI based heuristic hybrid search for flexible manufacturing systems—Part 1. Petri net modelling and heuristic search [J]. Computers and Industrial Engineering, 2003, 44(4): 527543.[13]Huang B, Shi X X, Xu N. Scheduling FMS with alternative routing using Petri nets and near admissible heuristic search[J]. International Journal of Advanced Manufacturing Technology, 2012, 63(913):11311136. |
[1] | LIU Yahui, SHEN Xingwang, GU Xinghai, PENG Tao, BAO Jinsong, ZHANG Dan. A Dual-System Reinforcement Learning Method for Flexible Job Shop Dynamic Scheduling [J]. Journal of Shanghai Jiao Tong University, 2022, 56(9): 1262-1275. |
[2] | LI Dechang, YANG Hualong, DUAN Jingru. A Joint Optimization of Vessel Scheduling and Refueling Strategy for Container Liner Shipping with Cooperative Agreements [J]. Journal of Shanghai Jiao Tong University, 2022, 56(7): 953-964. |
[3] | LI Linyan, HAN Shuang, QIAO Yanhui, LI Li, LIU Yongqian, YAN Jie, LIU Haidong. A Wind-Solar-Electric Vehicles Coordination Scheduling Method for High Proportion New Energy Grid-Connected Scenarios [J]. Journal of Shanghai Jiao Tong University, 2022, 56(5): 554-563. |
[4] | WANG Zixiang, WU Zerui, LIU Ran. Weekly Physician Scheduling for Emergency Departments with Time-Varying Demands of Patients with Revisits [J]. Journal of Shanghai Jiao Tong University, 2022, 56(2): 242-252. |
[5] | TANG Hongtao, WANG Dannan, SHAO Yiping, ZHAO Wenbin, JIANG Weiguang, CHEN Qingfeng. A Modified Migrating Birds Optimization for Multi-Objective Lot Streaming Hybrid Flowshop Scheduling [J]. Journal of Shanghai Jiao Tong University, 2022, 56(2): 201-213. |
[6] | LU Qiuyu, YU Zhen, YANG Yinguo, LI Li. Two-Stage Optimal Schedule of Offshore Wind-Power-Integrated Multi-Microgrid Considering Uncertain Power of Sources and Loads [J]. Journal of Shanghai Jiao Tong University, 2022, 56(10): 1308-1316. |
[7] | WANG Jinfeng, CHEN Lu, YANG Wenhui. A Single Machine Scheduling Problem Considering Machine Availability Constraints [J]. Journal of Shanghai Jiao Tong University, 2021, 55(1): 103-110. |
[8] | JIANG Xiaokang, ZHANG Peng, LÜ Youlong, ZHAO Xinming, ZHANG Jie. Hybrid Ant Colony Algorithm for Batch Scheduling in Semiconductor Furnace Operation [J]. Journal of Shanghai Jiaotong University, 2020, 54(8): 792-804. |
[9] | ZHU Hongwei, LU Zhiqiang. Modeling and Optimization of Resource Constrained Project Scheduling Problem Considering Employee-Timetabling [J]. Journal of Shanghai Jiaotong University, 2020, 54(6): 624-635. |
[10] | MENG Lingtong, JIANG Zuhua, TAO Ningrong, LIU Jianfeng, ZHENG Hong. Multi-Stockyard Scheduling Considering Technological Process and Combined Assembly Block [J]. Journal of Shanghai Jiao Tong University, 2020, 54(4): 331-343. |
[11] | MA Changpu,ZHOU Binghai. Scheduling of Multi-Load Rail Guided Vehicles in AS/RS with Collision Avoidance Constrains [J]. Journal of Shanghai Jiaotong University, 2020, 54(2): 126-134. |
[12] | FANG Jia, LU Zhiqiang. Modeling and Optimization of Robust Scheduling Template Considering Equipment Failure [J]. Journal of Shanghai Jiao Tong University, 2020, 54(12): 1278-1290. |
[13] | ZHAO Rui, GU Xingsheng. A Discrete Sine Optimization Algorithm for No-Idle Flow-Shop Scheduling Problem [J]. Journal of Shanghai Jiao Tong University, 2020, 54(12): 1291-1299. |
[14] | CUI Weiwei (崔维伟). Approximate Approach to Deal with the Uncertainty in Integrated Production Scheduling and Maintenance Planning [J]. Journal of Shanghai Jiao Tong University (Science), 2020, 25(1): 106-117. |
[15] | ZHOU Binghai,LIU Wenlong. Multi-Objective Hybrid Flow-Shop Scheduling Problem Considering Energy Consumption and On-Time Delivery [J]. Journal of Shanghai Jiaotong University, 2019, 53(7): 773-779. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||