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Original Articles

A GA-based heuristic approach for offshore structure construction spatial scheduling under uncertainty

, &
Pages 660-668 | Received 13 Sep 2013, Accepted 10 Jul 2014, Published online: 05 Aug 2014

References

  • Cho KK, Chung KH, Park C, Park JC, Kim HS. 2001. A spatial scheduling system for block painting process in shipbuilding. CIRP Ann Manufacturing Technol. 50(1):339–342.
  • Cho KK, Oh JS, Ryu KR, Choi HR. 1998. An integrated process planning and scheduling system for block assembly in shipbuilding. CIRP Ann Manufacturing Technol. 47(1):419–422.
  • Eyres DJ. 2007. Ship construction. London: Butterworth–Heinemann.
  • Gholami M, Zandieh M. 2009. Integrating simulation and genetic algorithm to schedule a dynamic flexible job shop. J Intelligent Manufacturing. 20(4):481–498.
  • Ghrayeb OA. 2003. A bi-criteria optimization: minimizing the integral value and spread of the fuzzy makespan of job shop scheduling problems. Appl Soft Comput. 2(3):197–210.
  • Ishii MH, Tada TM. 1992. Two scheduling problems with fuzzy due dates. Fuzzy Sets Syst. 46(3):339–347.
  • Jeong SJ, Lim SJ, Kim KS. 2006. Hybrid approach to production scheduling using genetic algorithm and simulation. Int J Adv Manufacturing Technol. 28(1–2):129–136.
  • Koh SG, Park JC, Choi YS, Joo CM. 1999. Development of a block assembly scheduling system for shipbuilding company. IE interfaces. 12(4):586–594.
  • Lee JK, Lee KJ, Park HK, Hong JS, Lee JS. 1997. Developing scheduling systems for Daewoo Shipbuilding: DAS project. Eur J Oper Res. 97(2):380–395.
  • Lee KJ, Lee JK, Choi SY. 1996. A spatial scheduling system and its application to shipbuilding: DAS-CURVE. Expert Syst Appl. 10(3):311–324.
  • Lei D. 2008. Pareto archive particle swarm optimization for multi-objective fuzzy job shop scheduling problems. Int J Adv Manufacturing Technol. 37(1–2):157–165.
  • Li B, Zhao ZY, Li G. 2005. A dynamic scheduling method for spatial layout planning. Proceedings of International Conference on Machine Learning and Cybernetics. 18–21 Aug. 2005, Guangzhou, China: IEEE. 3612–3617.
  • Li R. 2010. Theory and application research of shipbuilding project integration management. Dalian: Dalian University of Technology.
  • Liker JK, Lamb T. 2000. Lean manufacturing principles guide [online]. Available from: http://www.nsrp.org/Project_Information/major_projects/deliverables/ase_91000.pdf
  • Liou T, Wang MJ. 1992. Ranking fuzzy numbers with integral value. Fuzzy Sets Syst. 50(3):247–255.
  • Liu Z, Chua DKH, Yeoh KW. 2011. Aggregate production planning for shipbuilding with variation-inventory trade-offs. Int J Prod Res. 49(20):6249–6272.
  • Park C, Chung KH, Park JC, Cho KK, Baek TH, Son EI. 2002. A spatial scheduling application at the block paint shop in shipbuilding: the HYPOS project. Prod Plann Control. 13(4):342–354.
  • Park K, Lee K, Park K, Kim S. 1996. Modeling and solving the spatial block scheduling problem in a shipbuilding company. Comput Industrial Eng. 30(3):357–364.
  • Paulus JJ, Hurink J. 2006. Adjacent-resource scheduling. Electron Notes Discrete Math. 25, 113–116.
  • Raj P, Srivastava RK. 2007. Analytical and heuristic approaches for solving the spatial scheduling problem. Proceedings of the IEEE International Conference on Industrial Engineering and Engineering Management. 2–4 Dec. 2007, Singapore: IEEE. 1093–1097.
  • Ryu C, Shin JG, Kwon OH, Lee JM. 2008. Development of integrated and interactive spatial planning system of assembly blocks in shipbuilding. Int J Comput Integrated Manufacturing. 21(8):911–922.
  • Shin JG, Kwon OH, Ryu C. 2008. Heuristic and metaheuristic spatial planning of assembly blocks with process schedules in an assembly shop using differential evolution. Prod Plann Control. 19(6):605–615.
  • Varghee R, Yoon DY. 2005. Spatial block arrangement in ship building industry using genetic algorithm for obtaining solution for anticipated bottleneck. In: Jin S. Chung, Seok Won Hong, Jay Koo, Takeshi Komai, Wataru Koterayama, editors. Proceedings of the 15th International Offshore and Polar Engineering Conference; 19–24 June; Seoul. Cupertino (CA): International Society of Offshore and Polar Engineers
  • Zhang Z, Chen J. 2011. Solving the spatial scheduling problem: a two-stage approach. Int J Prod Res. 50(10):2732–2743.
  • Zheng J, Jiang Z, Chen Q. 2011. Block spatial scheduling modelling and application in shipbuilding. Int J Prod Res. 50(10):2744–2756.
  • Zheng J, Jiang Z, Chen Q, Liu Q. 2010. Spatial scheduling algorithm minimising makespan at block assembly shop in shipbuilding. Int J Prod Res. 49(8):2351–2371.
  • Zhuo L, Chua DKH, Wee YH. 2012. Scheduling dynamic block assembly in shipbuilding through hybrid simulation and spatial optimisation. Int J Prod Res. 50(20):5986–6004.

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