Edgar Bento - Master Thesis Student
​Production System Analysis: a Simulation Based Approach
DOCUMENTS
REFERENCES
[1] S. Terzi and S. Cavalieri, “Simulation in the supply chain context: A survey,” Comput. Ind., vol. 53, no. 1, pp. 3–16, Jan. 2004.
[2] N. V. K. Jasti and R. Kodali, “Lean production: literature review and trends,” Int. J. Prod. Res., no. August, pp. 1–19, 2014.
[3] H. C. W. Lau, B. Jiang, F. T. S. Chan, and R. W. L. Ip, “An innovative scheme for product and process design,” J. Mater. Process. Technol., vol. 123, no. 1, pp. 85–92, 2002.
[4] A. Mahfouz, J. Crowe, and A. Arisha, “Integrating Current State and Future State Value Stream Mapping with Discrete Event Simulation : a Lean Distribution Case Study,” no. c, pp. 161–168, 2011.
[5] E. Jarkko, W. Lu, S. Lars, and O. Thomas, “Discrete Event Simulation Enhanced Value Stream Mapping : An Industrialized Construction Case Study,” Lean Constr. J., vol. 10, pp. 47–65, 2013.
[6] K. Venkat and W. Wakeland, “Using simulation to understand and optimize a lean service process,” Simul. Ser., pp. 242–248, 2006.
[7] B. J. Schroer, “Simulation as a Tool in Understanding the Concepts of Lean Manufacturing,” Simul. Trans. Soc. Model. Simul., vol. 80, no. 3, pp. 171–175, 2004.
[8] “AnyLogic - Manufacturing Case Studies.” [Online]. Available: http://www.anylogic.com/case-studies/?TAGS=manufacturing&NUMBER_TAGS=35. [Accessed: 15-Sep-2015].
[9] “AnyLogic - Logistics and Supply Chain Case Studies.” [Online]. Available: http://www.anylogic.com/case-studies/?TAGS=logistics-and-supply-chains&NUMBER_TAGS=37. [Accessed: 16-Sep-2015].
[10] “Anylogic - Ports and Containers Terminals Case Studies.” [Online]. Available: http://www.anylogic.com/case-studies/?TAGS=ports-and-container-terminals&NUMBER_TAGS=1508. [Accessed: 16-Sep-2015].
[11] “AnyLogic - Markets and Competition.” [Online]. Available: http://www.anylogic.com/case-studies/?TAGS=markets-and-competition&NUMBER_TAGS=275. [Accessed: 16-Sep-2015].
[12] A. Arisha and M. El Baradie, “On the Selection of Simulation Software for Manufacturing Application,” 2002.
[13] C. Mclean and S. Leong, “The Role of Simulation in Strategic Manufacturing,” Simulation, 1998.
[14] J. W. Fowler and O. Rose, “Grand Challenges in Modeling and Simulation of Complex Manufacturing Systems,” Simulation, vol. 80, no. 9, pp. 469–476, 2004.
[15] F. a. Abdulmalek and J. Rajgopal, “Analyzing the benefits of lean manufacturing and value stream mapping via simulation: A process sector case study,” Int. J. Prod. Econ., vol. 107, no. 1, pp. 223–236, 2007.
[16] A. Gupta, K. Singh, and R. Verma, “A critical study and comparison of manufacturing simulation softwares using analytic hierarchy process,” J. Eng. Sci. Technol., vol. 5, no. 1, pp. 108–129, 2010.
[17] M. Jahangirian, T. Eldabi, A. Naseer, L. K. Stergioulas, and T. Young, “Simulation in manufacturing and business: A review,” Eur. J. Oper. Res., vol. 203, no. 1, pp. 1–13, May 2010.
[18] A. Negahban and J. S. Smith, “Simulation for manufacturing system design and operation: Literature review and analysis,” J. Manuf. Syst., vol. 33, no. 2, pp. 241–261, 2014.
[19] “AnyLogic.” [Online]. Available: http://www.anylogic.com/. [Accessed: 31-Aug-2015].
[20] J. A. Tompkins, J. A. White, Y. A. Bozer, and J. M. . A. Tanchoco, Facilities Planning. 2010.
[21] A. Drira, H. Pierreval, and S. Hajri-Gabouj, “Facility layout problems: A survey,” Annu. Rev. Control, vol. 31, no. 2, pp. 255–267, Jan. 2007.
[22] N. Chase, J. Aquilano, and R. B, Operations Management for Competitive Advantage (The Mcgraw-Hill/Irwin Series Operations and Decision Sciences). .
[23] S.-D. Lee and S.-H. Ho, “Buffer sizing in manufacturing production systems with complex routings,” Int. J. Comput. Integr. Manuf., vol. 15, no. 5, pp. 440–452, 2002.
[24] T. Tezcan, “Optimal buffer allocation in production lines Using an Automata Search,” IIE Trans., vol. 35, no. 1, pp. 1–10, 2003.
[25] N. Zheng and X. Lu, “Comparative study on push and pull production system based on anylogic,” Proc. - 2009 Int. Conf. Electron. Commer. Bus. Intell. ECBI 2009, pp. 455–458, 2009.
[26] A. Krishnamurthy, R. Suri, and M. Vernon, “Push can perform better than pull for flexible manufacturing systems with multiple products,” Ind. Eng. Res. …, pp. 1–7, 2000.
[27] K. Z. Zhou, C. K. Yim, and D. K. Tse, “The Effects of Strategic Orientations on Technology- and Market-Based Breakthrough Innovations,” J. Mark., vol. 69, no. 2, pp. 42–60, 2005.
[28] W. J. Hopp and M. L. Spearman, “To Pull or Not to Pull: What Is the Question?,” Manuf. Serv. Oper. Manag., vol. 6, no. 2, pp. 133–148, 2004.
[29] M. Savsar, “Simulation analysis of a pull-push system for an electronic assembly line,” Int. J. Prod. Econ., vol. 51, no. 3, pp. 205–214, Sep. 1997.
[30] M. L. Spearman and M. a. Zazanis, “Push and Pull Production Systems: Issues and Comparisons,” Oper. Res., vol. 40, no. 3, pp. 521–532, 1992.
[31] J.-L. Deleersnyder, T. J. Hodgson, H. Muller, and P. J. O’Grady, “kanban Controlled Pull Systems: An Analytic Approch,” Manage. Sci., vol. 35, 1989.
[32] J.-P. Timsit, A. Castiaux, Y. Truong, G. A. Athaide, and R. R. Klink, “The effect of market-pull vs. resource-push orientation on performance when entering new markets,” J. Bus. Res., vol. 68, no. 9, pp. 2005–2014, Feb. 2015.
[33] A. De Toni, M. Caputo, and A. Vinelli, “Production Management Techniques: Push-Pull Classification and Application Conditions,” Int. J. Oper. Prod. Manag., vol. 8, no. 2, pp. 35–51, 1988.
[34] J. Geraghty and C. Heavey, “A comparison of Hybrid Push/Pull and CONWIP/Pull production inventory control policies,” Int. J. Prod. Econ., vol. 91, no. 1, pp. 75–90, Sep. 2004.
[35] Francis, Mcginnis, and White, Facility Layout And Location: An Analytical Approach. .
[36] S. P. Singh and R. R. K. Sharma, “A review of different approaches to the facility layout problems,” Int. J. Adv. Manuf. Technol., vol. 30, no. 5–6, pp. 425–433, 2006.
[37] M. R. Garey and D. S. Johnson, Computers and Intractability: A Guide to the Theory of NP-Completeness. 1979.
[38] Y. Zhu and F. Wang, “Study on the general plane of log yards based on systematic layout planning,” 2009 Int. Conf. Inf. Manag. Innov. Manag. Ind. Eng. ICIII 2009, vol. 3, pp. 92–95, 2009.
[39] F. R. Jacobs and R. B. Chase, Operations and supply chain management, vol. Global ed. New York: McGraw-Hill.
[40] P. Shewale, “Improvement In Plant Layout Using Systematic Layout Planning (Slp) For Increased Productivity,” … J. Adv. …, vol. 4, no. 12, pp. 1382–1386, 2012.
[41] P. Kouvelis and M. W. Kim, “Unidirectional Loop Network Layout Problem in Automated Manufacturing Systems,” Oper. Res., vol. 40, no. 3, pp. 533–550, 1992.
[42] V. Maniezo, A. Colorni, and M. Dorigo, “The Ant System Applied to The Quadratic Assignment Problem,” vol. 11, no. 5, pp. 769–778, 1994.
[43] R. R. Schaller, “Moore’s law: past, present and future,” Spectrum, IEEE, vol. 34, no. 6, pp. 52–59, 1997.
[44] G. C. Armour and E. S. Buffa, “A Heuristic Algorithm and Simulation Approach to Relative Location of Facilities,” Manage. Sci., vol. 9, no. 2, pp. 294–309, 1963.
[45] R. D. Meller and K.-Y. Gau, “The facility layout problem: Recent and emerging trends and perspectives,” J. Manuf. Syst., vol. 15, no. 5, pp. 351–366, Jan. 1996.
[46] N. H. Prasad, G. Rajyalakshmi, and a. S. Reddy, “A Typical Manufacturing Plant Layout Design Using CRAFT Algorithm,” Procedia Eng., vol. 97, pp. 1808–1814, 2014.
[47] J. S. Smith, “Survey on the use of simulation for manufacturing system design and operation,” J. Manuf. Syst., vol. 22, no. 2, pp. 157–171, Jan. 2003.
[48] R. G. Ingalls, “Introduction to Simulation,” Proc. 2008 Winter Simul. Conf., pp. 17–26, 2008.
[49] J. Banks, “Proceedings of the 2000 Winter Simulation Conference J. A. Joines, R. R. Barton, K. Kang, and P. A. Fishwick, eds.,” pp. 9–16, 2000.
[50] R. E. Shannon, “Introduction to the art and science of simulation,” 1998 Winter Simul. Conf. Proc. (Cat. No.98CH36274), vol. 1, pp. 7–14, 1998.
[51] A.-C. Fagerlind Ståhl, M. Gustavsson, N. Karlsson, G. Johansson, and K. Ekberg, “Lean production tools and decision latitude enable conditions for innovative learning in organizations: a multilevel analysis.,” Appl. Ergon., vol. 47, pp. 285–91, Mar. 2015.
[52] A. Maria, “Introduction to modeling and simulation,” Proc. - Winter Simul. Conf.,vol. 2005, pp. 16–23, 2005.
[53] J. Banks, J. S. Carson, B. L. Nelson, and D. M. Nicol, Discrete Event System Simulation, Third. .
[54] J. E. Reeb and S. Leavengood, “Simulating a Manufacturing System :,” Simulation, no. October, 2003.
[55] J. Banks and R. Gibson, “Simulation modeling: Some programming required,” IIE Solut., vol. 29, no. 2, pp. 26–31, 1997.
[56] A. Borshchev, “The big book of simulation modeling,” 2013.
[57] M. Janssen, “Agent-based modelling,” Model. Ecol. Econ., pp. 1–9, 2005.
[58] V. Grimm, U. Berger, F. Bastiansen, S. Eliassen, V. Ginot, J. Giske, J. Goss-Custard, T. Grand, S. K. Heinz, G. Huse, A. Huth, J. U. Jepsen, C. Jørgensen, W. M. Mooij, B. Müller, G. Pe’er, C. Piou, S. F. Railsback, A. M. Robbins, M. M. Robbins, E. Rossmanith, N. Rüger, E. Strand, S. Souissi, R. A. Stillman, R. Vabø, U. Visser, and D. L. DeAngelis, “A standard protocol for describing individual-based and agent-based models,” Ecol. Modell., vol. 198, no. 1–2, pp. 115–126, 2006.
[59] S. F. Railsback, S. L. Lytinen, and S. K. Jackson, “Agent-based Simulation Platforms: Review and Development Recommendations,” Simulation, vol. 82, no. 9, pp. 609–623, 2006.
[60] E. Bonabeau, “Agent-based modeling: methods and techniques for simulating human systems.,” Proc. Natl. Acad. Sci., vol. 99, no. suppl. 3, pp. 7280–7287, 2002.
[61] A. Azevedo, Conteúdos da Unidade Currícular de Gestão de Operações do Mestrado Integrada em Engenharia Electrotécnica e Computadores. 2013.
[62] R. P. Marek, D. A. Elkins, and D. R. Smith, “Understanding the fundamentals of Kanban and CONWIP pull systems using simulation,” Proceeding 2001 Winter Simul. Conf., no. 2, pp. 921–929, 2001.
[63] P. M. Gibbons and S. C. Burgess, “Introducing OEE as a measure of lean Six Sigma capability,” Int. J. Lean Six Sigma, vol. 1, no. 2, pp. 134–156, 2010.
[64] P. Hines and N. Rich, “The seven value stream mapping tools,” Int. J. Oper. Prod. Manag., vol. 17, no. 1, pp. 46–64, 1997.
[65] M. K. Govil and M. C. Fu, “Queueing theory in manufacturing: A survey,” J. Manuf. Syst., vol. 18, no. 3, pp. 214–240, 1999.
[66] S. B. Gershwin and J. E. Schor, “Efficient algorithms for buffer space allocation,” Ann. Oper. Res., vol. 93, pp. 117–144, 2000.
[67] O. I. Tukel, W. O. Rom, and S. D. Eksioglu, “An investigation of buffer sizing techniques in critical chain scheduling,” Eur. J. Oper. Res., vol. 172, no. 2, pp. 401–416, 2006.
[68] E. E. Aleisa and L. Lin, “For effective facilities planning: Layout optimization then simulation, or vice versa?,” Proc. - Winter Simul. Conf., vol. 2005, pp. 1381–1385, 2005.
[69] I. Grigoryev, AnyLogic 7 in Three Days, Second Edi. 2015.
ADDICIONAL BIBLIOGRAPHY
[1] Sule DR. Manufacturing Facilities: Location, Planning and Design. Second.
[2] Alec Sharp PM. Workflow Modeling: Tools for Process Improvement and Application Development
[3] Authur Tenner ID. Process Redesign: The Implementation Guide for Managers
[4] Barbosa F, Dias P. Estudo do Layout do Armazém e Organização do Fluxo F luxo de Materiais na General Electric. 2010;
[5] Bouça FA. Arquiteturas de Sistemas de Produção. 2013.
[6] Esteves JG de S. Simulação de sistemas de produção industriais. Faculdade de Engenhraia da Universidade do Porto; 2009.
[7] Fernandes RA da C. Simulador de Sistemas de Produção e de Informação Industriais Aplicação a sistema de produção lean. 2008.
[8] Fevereiro RJM. Definição de Layout, fluxos de produção e capacidades de uma fábrica de produção de carroçarias na CaetanoBus, S.A. Faculdade de Engenharia da Universidade do Porto; 2012.
[9] Flores E. Evaluating Lean Manufacturing Proposals through Discrete Event Simulation – A Case Study at Alfa Laval Sönke Detjens. mälardalens högskola eskilstuna västerås;
[10] Freire LM. Análise e simulação do ciclo de reabastecimento das células de produção em sistemas Just-in-Time [Internet]. Faculdade de Engenharia da Unive
[11] Gomes TRD. Avaliação de Configurações de Sistemas de Produção. Faculdade de Engenharia da Universidade do Porto; 2008.
[12] Martins PA. Supermarket Sizing in Production Flow Systems Based On Lean Principles. 2015.
[13] Moura LAF de. Nivelamento de Fluxos luxos de Produção em Layout Funcional uncional ( Lean Manufacturing ). Faculdade de Engenhraia da Universidade do Porto; 2009.
[14] Pereira APA. Simulação de Sistemas de Produção Lean. Faculdade de Engenhraia da Universidade do Porto; 2009.
[15] Rodrigues JGDF. An analysis and evaluation of Discrete Production Systems: a Simulation based approach. Faculdade de Engenharia da Universidade do Porto; 2008.
[16] Santos SMVNC. Study Of A Supply Chain Performance Following A Push And A Push-Pull Strategy. 2008.
[17] Seixas HLS. Análise do Fluxo e Redefinição do Layout da Área Produtiva. Faculdade de Engenharia da Universidade do Porto; 2014.
[18] Infoliteracia, S. d. Formação em Infoliteracia: MIEEC
[19] Andrea, et al. 09 - Layout design II., Concordia Institute for Information Systems Engineerin g (CIISE) .