TY - GEN
T1 - Linear rail space dynamic scheduling technology for multi- tasking hybrid assembly sections
AU - Lu, Zhi Bing
AU - Wang, Ai Min
AU - Tang, Cheng Tong
AU - Li, Jing Sheng
PY - 2013
Y1 - 2013
N2 - For the rapid response to production scheduling problem driven by high-density production tasks, a dynamic scheduling technology for the large precision strip products assembly with a mixture of task time nodes and line-rail space is proposed. A scheduling constrained model containing coverage, proximity, timeliness and resource is established. A linear rail space production scheduling technology using heuristic automatic scheduling and event-driven method is put forward. The time rule based on delivery and single completion assembly is formed, at the same time the space rule based on the adjacent rail and comprehensive utilization is researched. Supposing the privilege of single product assembling as the core, the scheduling parts filter method based on multiple constraints and former rules. For the space layout problem, a clingy forward and backward algorithms is proposed to judge the assemble position regarding the space comprehensive utilization rate. The classification of the various disturbances in the actual production is summarized. Three basic algorithms are proposed, including insertion, moving and re-scheduling algorithm, in order to solve the assembly dynamic scheduling problem driven by production disturbance events. Finally, take rocket as the example the rocket assembly space production scheduling system is developed, combining with the proposed algorithm. The practicability of the system is validated using real data.
AB - For the rapid response to production scheduling problem driven by high-density production tasks, a dynamic scheduling technology for the large precision strip products assembly with a mixture of task time nodes and line-rail space is proposed. A scheduling constrained model containing coverage, proximity, timeliness and resource is established. A linear rail space production scheduling technology using heuristic automatic scheduling and event-driven method is put forward. The time rule based on delivery and single completion assembly is formed, at the same time the space rule based on the adjacent rail and comprehensive utilization is researched. Supposing the privilege of single product assembling as the core, the scheduling parts filter method based on multiple constraints and former rules. For the space layout problem, a clingy forward and backward algorithms is proposed to judge the assemble position regarding the space comprehensive utilization rate. The classification of the various disturbances in the actual production is summarized. Three basic algorithms are proposed, including insertion, moving and re-scheduling algorithm, in order to solve the assembly dynamic scheduling problem driven by production disturbance events. Finally, take rocket as the example the rocket assembly space production scheduling system is developed, combining with the proposed algorithm. The practicability of the system is validated using real data.
KW - Completion assembly coordination algorithm
KW - Dynamic scheduling
KW - Heuristic rules
KW - Linear rail space production scheduling
KW - Liner space resources scheduling
UR - http://www.scopus.com/inward/record.url?scp=84872555909&partnerID=8YFLogxK
U2 - 10.4028/www.scientific.net/AMM.271-272.650
DO - 10.4028/www.scientific.net/AMM.271-272.650
M3 - Conference contribution
AN - SCOPUS:84872555909
SN - 9783037855782
T3 - Applied Mechanics and Materials
SP - 650
EP - 656
BT - Frontiers of Manufacturing and Design Science III
T2 - 3rd International Conference on Frontiers of Manufacturing and Design Science, ICFMD 2012
Y2 - 11 December 2012 through 13 December 2012
ER -