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A framework to manage reconfigurability in manufacturing

ORCID Icon, ORCID Icon & ORCID Icon
Pages 3815-3837 | Received 09 Feb 2017, Accepted 30 Jan 2018, Published online: 16 Feb 2018

References

  • Abbasi, M. , and M. Houshmand . 2009. “Production Planning of Reconfigurable Manufacturing Systems with Stochastic Demands Using Tabu Search.” International Journal of Manufacturing Technology and Management 17 (1–2): 125–148. doi:10.1504/IJMTM.2009.023782.
  • Abbasi, M. , and M. Houshmand . 2011. “Production Planning and Performance Optimization of Reconfigurable Manufacturing Systems Using Genetic Algorithm.” The International Journal of Advanced Manufacturing Technology 54 (1–4): 373–392. doi:10.1007/s00170-010-2914-x.
  • Abdi, M. R. 2009a. “Fuzzy Multi-criteria Decision Model for Evaluating Reconfigurable Machines.” International Journal of Production Economics 117 (1): 1–15.10.1016/j.ijpe.2008.06.009
  • Abdi, M. R. 2009b. “Layout Configuration Selection for Reconfigurable Manufacturing Systems Using the Fuzzy AHP.” International Journal of Manufacturing Technology and Management 17 (1/2): 149. doi:10.1504/IJMTM.2009.023783.
  • Abdi, M. R. , and A. W. Labib . 2003. “A Design Strategy for Reconfigurable Manufacturing Systems (RMSs) Using Analytical Hierarchical Process (AHP): A Case Study.” International Journal of Production Research 41 (10): 2273–2299. doi:10.1080/0020754031000077266.
  • Abdi, M. R. , and A. W. Labib . 2004a. “Feasibility Study of the Tactical Design Justification for Reconfigurable Manufacturing Systems Using the Fuzzy Analytical Hierarchical Process.” International Journal of Production Research 42 (15): 3055–3076. doi:10.1080/00207540410001696041.
  • Abdi, M. R. , and A. W. Labib . 2004b. “Grouping and Selecting Products: The Design Key of Reconfigurable Manufacturing Systems (RMSs).” International Journal of Production Research 42 (3): 521–546. doi:10.1080/00207540310001613665.
  • Abdi, Mohammad Reza , and Ashraf W. Labib . 2017. “RMS Capacity Utilisation: Product Family and Supply Chain.” International Journal of Production Research 55 (7): 1930–1956. doi:10.1080/00207543.2016.1229066.
  • Aboufazeli, N . 2011. “Reconfigurable Machine Tools Design Methodologies and Measuring Reconfigurability for Design Evaluation.” Master diss., The Royal Institute of Technology.
  • Aguilar, A. , A. Roman-Flores , and J. C. Huegel . 2013. “Design, Refinement, Implementation and Prototype Testing of a Reconfigurable Lathe-Mill.” Journal of Manufacturing Systems 32 (2): 364–371. doi:10.1016/j.jmsy.2013.01.003.
  • Andersen, A. L. , T. D. Brunoe , and K. Nielsen . 2015. “Reconfigurable Manufacturing on Multiple Levels: Literature Review and Research Directions.” In Advances in Production Management Systems: Innovative Production Management towards Sustainable Growth , 266–273. Cham: Springer.
  • Ayman, M. , M. Youssef , and H. A. ElMaraghy . 2006. “Assessment of Manufacturing Systems Reconfiguration Smoothness.” International Journal of Advanced Manufacturing Technology 30 (1–2): 174–193. doi:10.1007/s00170-005-0034-9.
  • Azab, A. , and H. A. ElMaraghy . 2007. “Sequential Process Planning: A Hybrid Optimal Macro-level Approach.” Journal of Manufacturing Systems 26 (3–4): 147–160. doi:10.1016/j.jmsy.2008.03.003.
  • Azevedo, M. M. , J. A. Crispim , and J. P. de Sousa . 2017. “A Dynamic Multi-objective Approach for the Reconfigurable Multi-facility Layout Problem.” Journal of Manufacturing Systems 42: 140–152. doi:10.1016/j.jmsy.2016.12.008.
  • Bensmaine, A. , M. Dahane , and L. Benyoucef . 2013. “A Non Dominated Sorting Genetic Algorithm Based Approach for Optimal Machines Selection in Reconfigurable Manufacturing Environment.” Computers & Industrial Engineering . Advance Online Publication. doi:10.1016/j.cie.2012.09.008.
  • Bi, Z. M. 2011. “Revisiting System Paradigms from the Viewpoint of Manufacturing Sustainability.” Sustainability 3 (12): 1323–1340. doi:10.3390/su3091323.
  • Bi, Z. M. , S. Y. T. Lang , W. Shen , and L. Wang . 2008a. “Reconfigurable Manufacturing Systems: The State of the Art.” International Journal of Production Research 46 (4): 967–992. doi:10.1080/00207540600905646.
  • Bi, Z. M. , Y. Sherman , T. Lang , M. Verner , and P. Orban . 2008b. “Development of Reconfigurable Machines.” The International Journal of Advanced Manufacturing Technology 39 (11–12): 1227–1251. doi:10.1007/s00170-007-1288-1.
  • Borisovsky, P. A. , X. Delorme , and A. Dolgui . 2014. “Balancing Reconfigurable Machining Lines via a Set Partitioning Model.” International Journal of Production Research 52 (13): 4026–4036. doi:10.1080/00207543.2013.849857.
  • Bruccoleri, M. , M. Amico , and G. Perrone . 2003. “Distributed Intelligent Control of Exceptions in Reconfigurable Manufacturing Systems.” International Journal of Production Research 41 (7): 1393–1412. doi:10.1080/1352816031000075170.
  • Bruccoleri, M. , G. Lo Nigro , G. Perrone , P. Renna , and S. Noto La Diega . 2005. “Production Planning in Reconfigurable Enterprises and Reconfigurable Production Systems.” CIRP Annals 54 (1): 433–436. doi:10.1016/S0007-8506(07)60138-3.
  • Bruccoleri, M. , Z. J. Pasek , and Y. Koren . 2006. “Operation Management in Reconfigurable Manufacturing Systems: Reconfiguration for Error Handling.” International Journal of Production Economics 100 (1): 87–100. doi:10.1016/j.ijpe.2004.10.009.
  • Cao, Y. , H. A. ElMaraghy , and A. Azab . 2007. “Reconfigurable Control Structure for Robots in Assembly.” Journal of Intelligent and Robotic Systems 50 (4): 419–439. doi:10.1007/s10846-007-9173-6.
  • Carpanzano, E. , A. Cesta , A. Orlandini , R. Rasconi , M. Suriano , A. Umbrico , and A. Valente . 2016. “Design and Implementation of a Distributed Part-routing Algorithm for Reconfigurable Transportation Systems.” International Journal of Computer Integrated Manufacturing 29 (12): 1317–1334. doi:10.1080/0951192X.2015.1067911.
  • Chaube, A. , L. Benyoucef , and M. K. Tiwari . 2012. “An Adapted NSGA-2 Algorithm Based Dynamic Process Plan Generation for a Reconfigurable Manufacturing System.” Journal of Intelligent Manufacturing 23 (4): 1141–1155. doi:10.1007/s10845-010-0453-9.
  • Crama, Y. , Y. Pochet , and Y. Wera . 2001. “A Discussion of Production Planning Approaches in the Process Industry.” CORE Discussion Papers 7 (2001): 1–33.
  • Deif, A. M. , and W. H. ElMaraghy . 2006. “A Control Approach to Explore the Dynamics of Capacity Scalability in Reconfigurable Manufacturing Systems.” Journal of Manufacturing Systems 25 (1): 12–24. doi:10.1016/S0278-6125(07)00003-9.
  • Deif, A. M. , and H. A. ElMaraghy . 2007a. “Assessing Capacity Scalability Policies in RMS Using System Dynamics.” International Journal of Flexible Manufacturing Systems 19 (3): 128–150. doi:10.1007/s10696-008-9031-2.
  • Deif, A. M. , and W. H. ElMaraghy . 2007b. “Investigating Optimal Capacity Scalability Scheduling in a Reconfigurable Manufacturing System.” The International Journal of Advanced Manufacturing Technology 32 (5–6): 557–562. doi:10.1007/s00170-005-0354-9.
  • Dhupia, J. , B. Powalka , R. Katz , and A. G. Ulsoy . 2007. “Dynamics of the Arch-type Reconfigurable Machine Tool.” International Journal of Machine Tools and Manufacture 47 (2): 326–334. doi:10.1016/j.ijmachtools.2006.03.017.
  • Dou, J. , X. Dai , and Z. Meng . 2010. “Optimisation for Multi-part Flow-line Configuration of Reconfigurable Manufacturing System Using GA.” International Journal of Production Research 48 (14): 4071–4100. doi:10.1080/00207540903036305.
  • Dubey, R. , A. Gunasekaran , and A. Chakrabarty . 2015. “World-class Sustainable Manufacturing: Framework and a Performance Measurement System.” International Journal of Production Research 53 (17): 5207–5223. doi:10.1080/00207543.2015.1012603.
  • Dubey, R. , A. Gunasekaran , P. Helo , T. Papadopoulos , S. J. Childe , and B. S. Sahay . 2017. “Explaining the Impact of Reconfigurable Manufacturing Systems on Environmental Performance: The Role of Top Management and Organizational Culture.” Journal of Cleaner Production 141: 56–66. doi:10.1016/j.jclepro.2016.09.035.
  • ElMaraghy, H. A. 2006. “Flexible and Reconfigurable Manufacturing Systems Paradigms.” Flexible Services and Manufacturing Journal 17 (4): 261–276. doi:10.1007/s10696-006-9028-7.
  • ElMaraghy, H. A. 2007. “Reconfigurable Process Plans for Responsive Manufacturing Systems.” In Digital Enterprise Technology , edited by P. F. Cunha and P. G. Maropulos, 35–44. Boston: Springer.
  • ElMaraghy, H. A. 2009. “Changing and Evolving Products and Systems – Models and Enablers.” In Changeable and Reconfigurable Manufacturing Systems, edited by  H. A. ElMaraghy, 25–45. London: Springer.
  • Essafi, M. , X. Delorme , and A. Dolgui . 2012. “A Reactive GRASP and Path Relinking for Balancing Reconfigurable Transfer Lines.” International Journal of Production Research 50 (18): 5213–5238. doi:10.1080/00207543.2012.677864.
  • Farid, A. M. 2014. “Measures of Reconfigurability and its Key Characteristics in Intelligent Manufacturing Systems.” Journal of Intelligent Manufacturing 28 (2): 353–369. doi:10.1007/s10845-014-0983-7.
  • Fredriksson, P. 2006. “Mechanisms and Rationales for the Coordination of a Modular Assembly System.” International Journal of Operations & Production Management 26 (4): 350–370. doi:10.1108/02656710210415703.
  • Freiheit, T. , M. Shpitalni , S. J. Hu , and Y. Koren . 2004. “Productivity of Synchronized Serial Production Lines with Flexible Reserve Capacity.” International Journal of Production Research 42 (10): 2009–2027. doi:10.1081/00207540310001647596.
  • Galan, R. , J. Racero , I. Eguia , and J. M. Garcia . 2007. “A Systematic Approach for Product Families Formation in Reconfigurable Manufacturing Systems.” Robotics and Computer-Integrated Manufacturing 23 (5): 489–502. doi:10.1016/j.rcim.2006.06.001.
  • Garbie, I. H. 2014. “An Analytical Technique to Model and Assess Sustainable Development Index in Manufacturing Enterprises.” International Journal of Production Research 52 (16): 4876–4915. doi:10.1080/00207543.2014.893066.
  • Garetti, M. , L. Fumagalli , and E. Negri . 2015. “Role of Ontologies for CPS Implementation in Manufacturing.” MPER – Management and Production Engineering Review 6 (4): 26–32. doi:10.1515/mper-2015-0033.
  • Goyal, K. K. , P. K. Jain , and M. Jain . 2012. “Optimal Configuration Selection for Reconfigurable Manufacturing System Using NSGA II and TOPSIS.” International Journal of Production Research 50 (15): 4175–4191. doi:10.1080/00207543.2011.599345.
  • Goyal, K. K. , P. K. Jain , and M. Jain . 2013. “A Comprehensive Approach to Operation Sequence Similarity Based Part Family Formation in the Reconfigurable Manufacturing System.” International Journal of Production Research 51 (6): 1762–1776. doi:10.1080/00207543.2012.701771.
  • Gu, X. , X. Jin , J. Ni , and Y. Koren . 2015. “Manufacturing System Design for Resilience.” Procedia CIRP 36: 135–140. doi:10.1016/j.procir.2015.02.075.
  • Gumasta, K. , S. Kumar Gupta , L. Benyoucef , and M. K. Tiwari . 2011. “Developing a Reconfigurability Index Using Multi-attribute Utility Theory.” International Journal of Production Research 49 (6): 1669–1683. doi:10.1080/00207540903555536.
  • Haddou Benderbal, H. , M. Dahane , and L. Benyoucef . 2017. “Flexibility-based Multi-objective Approach for Machines Selection in Reconfigurable Manufacturing System (RMS) Design under Unavailability Constraints.” International Journal of Production Research 55 (20): 6033–6051. doi:10.1080/00207543.2017.1321802.
  • Hasan, F. , P. K. Jain , and D. Kumar . 2014. “Performance Issues in Reconfigurable Manufacturing System.” In DAAAM International Scientific Book 2014 , 295–310. Vienna. doi:10.2507/daaam.scibook.2014.24.
  • Hees, A. , and G. Reinhart . 2015. “Approach for Production Planning in Reconfigurable Manufacturing Systems.” Procedia CIRP 33: 70–75. doi:10.1016/j.procir.2015.06.014.
  • Heisel, U. , and M. Meitzner . 2006. “Progress in Reconfigurable Manufacturing Systems.” In Reconfigurable Manufacturing Systems and Transformable Factories. Heidelberg: Springer, Berlin.
  • Kannan, M. , and J. Saha . 2009. “A Feature-based Generic Setup Planning for Configuration Synthesis of Reconfigurable Machine Tools.” The International Journal of Advanced Manufacturing Technology 43 (9–10): 994–1009. doi:10.1007/s00170-008-1779-8.
  • Katz, R. 2007. “Design Principles of Reconfigurable Machines.” The International Journal of Advanced Manufacturing Technology 34 (5–6): 430–439. doi:10.1007/s00170-006-0615-2.
  • Koren, Y . 2005. “Reconfigurable Manufacturing and Beyond.” The summary of keynote Speech of CIRP05 3rd International Conference on Reconfigurable Manufacturing, Ann Arbor, May 10.
  • Koren, Y . 2006. “General RMS Characteristics. Comparison with Dedicated and Flexible Systems.” Chap. 3 in Reconfigurable Manufacturing Systems and Transformable Factories. Heidelberg: Springer, Berlin.
  • Koren, Y. 2010. The Global Manufacturing Revolution . Hoboken, NJ: Wiley.10.1002/9780470618813
  • Koren, Y. 2013. “The Rapid Responsiveness of RMS.” International Journal of Production Research 51 (23–24): 6817–6827. doi:10.1080/00207543.2013.856528.
  • Koren, Y. 2014. “Reconfigurable Manufacturing System.” In The International Academy for Production Engineering: CIRP Encyclopedia of Production Engineering, edited by L. Laperrière and G. Reinhart . Heidelberg: Springer, Berlin.
  • Koren, Y. , and R. Katz . 2003. Reconfigurable apparatus and method for inspection during a manufacturing process. US Patent 6567162, May 20.
  • Koren, Y. , and M. Shpitalni . 2010. “Design of Reconfigurable Manufacturing Systems.” Journal of Manufacturing Systems 29 (4): 130–141. doi:10.1016/j.jmsy.2011.01.001.
  • Koren, Y ., and G. Ulsoy . 2002. “Reconfigurable Manufacturing System Having a Production Capacity Method for Designing Same and Method for Changing Its Production Capacity” 1 (12): 26. http://www.google.com/patents/US6349237.
  • Koren, Y. , U. Heisel , J. Jovane , T. Moriwaki , G. Pritschow , G. Ulsoy , and H. Van Brussel . 1999. “Reconfigurable Manufacturing Systems.” CIRP Annals–Manufacturing Technology 48 (2): 527–540. doi:10.1016/S0007-8506(07)63232-6 .
  • Koren, Y. , W. Wang , and X. Gu . 2016. “Value Creation through Design for Scalability of Reconfigurable Manufacturing Systems.” International Journal of Production Research  55 (5): 1–16. doi:10.1080/00207543.2016.1145821.
  • Kruger, K ., and A. Basson . 2016. “Erlang-based Control Implementation for a Holonic Manufacturing Cell.” International Journal of Computer Integrated Manufacturing 30 (6). Taylor & Francis: 1–12. doi:10.1080/0951192X.2016.1195923.
  • Kuo, C. H. 2001. “Resource Allocation and Performance Evaluation of the Reconfigurable Manufacturing Systems.” International Conference on Systems, Man and Cybernetics  4: 2451–2456. doi:10.1109/ICSMC.2001.972925.
  • Kusiak, A. 2002. “Integrated Product and Process Design: A Modularity Perspective.” Journal of Engineering Design 13 (3): 223–231. doi:10.1080/09544820110108926.
  • Landers, R. G. , B. Min , and Y. Koren . 2001. “Reconfigurable Machine Tools.” CIRP Annals 269–274.10.1016/S0007-8506(07)62120-9
  • Lastra, J. L. M. , and M. Delamer . 2006. “Semantic Web Services in Factory Automation: Fundamental Insights and Research Roadmap.” IEEE Transactions on Industrial Informatics 2 (1): 1–11. doi:10.1109/TII.2005.862144.
  • Leitão, P. , J. Barbosa , and D. Trentesaux . 2012. “Bio-inspired Multi-agent Systems for Reconfigurable Manufacturing Systems.” Engineering Applications of Artificial Intelligence 25 (5): 934–944. doi:10.1016/j.engappai.2011.09.025.
  • Liu, J. P. , Z. B. Luo , L. K. Chu , and Y. L. Chen . 2004. “Manufacturing System Design with Optimal Diagnosability.” International Journal of Production Research 42 (9): 1695–1714. doi:10.1080/00207540310001645147.
  • Makinde, O. A. , K. Mpofu , and A. P. I. Popoola . 2014. “Review of the Status of Reconfigurable Manufacturing Systems (RMS) Application in South Africa Mining Machinery Industries.” Procedia CIRP 17: 136–141. doi:10.1016/j.procir.2014.02.035.
  • Mehrabi, M. G. , A. G. Ulsoy , and Y. Koren . 2000a. “Reconfigurable Manufacturing Systems and their Enabling Technologies.” International Journal of Manufacturing Technology and Management 1 (1): 114–131.doi:10.1504/IJMTM.2000.001330.
  • Mehrabi, M. , A. G. Ulsoy , and Y. Koren . 2000b. “Reconfigurable Manufacturing Systems: Key to Future Manufacturing.” Journal of Intelligent Manufacturing 11 (4): 403–419.10.1023/A:1008930403506
  • Mehrabi, M. G. , and E. Kannatey-Asibu . 2001. “Mapping Theory: A New Approach to Design of Multi-Sensor Monitoring of Reconfigurable Machining Systems (RMS).” Journal of Manufacturing Systems 20: 297–304. doi:10.1016/S0278-6125(01)80049-2.
  • Meng, X. 2010. “Modeling of Reconfigurable Manufacturing Systems Based on Colored Timed Object-oriented Petri Nets.” Journal of Manufacturing Systems 29 (2–3): 81–90. doi:10.1016/j.jmsy.2010.11.002.
  • Mesa, J. , H. Maury , J. Turizo , and A. Bula . 2014. “A Methodology to Define a Reconfigurable System Architecture for a Compact Heat Exchanger Assembly Machine.” The International Journal of Advanced Manufacturing Technology 70 (9–12): 2199–2210. doi:10.1007/s00170-013-5451-6.
  • Molina, A. , C. A. Rodriguez , H. Ahuett , J. A. Cortés , M. Ramírez , G. Jiménez , and S. Martinez . 2005. “Next-generation Manufacturing Systems: Key Research Issues in Developing and Integrating Reconfigurable and Intelligent Machines.” International Journal of Computer Integrated Manufacturing 18 (7): 525–536. doi:10.1080/09511920500069622.
  • Moon, Y. M. , and S. Kota . 2002. “Generalized Kinematic Modeling of Reconfigurable Machine Tools.” Journal of Mechanical Design 124 (1): 47–51. doi:10.1115/1.1424892.
  • Müller, C. , M. Grunewald , and T. S. Spengler . 2017. “Redundant Configuration of Automated Flow Lines Based on “Industry 4.0”-Technologies.” Journal of Business Economics 87 (7): 877–898. doi:10.1007/s11573-016-0831-7.
  • Negri, E. , L. Fumagalli , M. Garetti , and L. Tanca . 2016. “Requirements and Languages for the Semantic Representation of Manufacturing Systems.” Computers in Industry 81 (C): 55–66. doi:10.1016/j.compind.2015.10.009.
  • Nejad, A. E ., I. Niroomand , and O. Kuzgunkaya . 2014. “Responsive Contingency Planning in Supply Risk Management by Considering Congestion Effects.” Omega 48: 19–35. doi:10.1016/j.omega.2014.03.002.
  • Niroomand, I. , O. Kuzgunkaya , and A. A. Asil Bulgak . 2012. “Impact of Reconfiguration Characteristics for Capacity Investment Strategies in Manufacturing Systems.” International Journal of Production Economics 139 (1): 288–301. doi:10.1016/j.ijpe.2012.05.012.
  • Niroomand, I. , O. Kuzgunkaya , and A. A. Bulgak . 2014. “The Effect of System Configuration and Ramp-up Time on Manufacturing System Acquisition under Uncertain Demand.” Computers and Industrial Engineering 73 (1): 61–74. doi:10.1016/j.cie.2014.04.017.
  • Pérez, R. , A. Valverde , H. Ahuett , A. Molina , and C. Riba . 2004. “A Modularity Framework for Concurrent Design of Reconfigurable Machine Tools.” In International Conference on Cooperative Design, Visualization, and Engineering . Heidelberg: Sringer, Berlin.
  • Prasad, D. A. , and S. C. Jayswal . 2017. Advance online publication. “Reconfigurability Consideration and Scheduling of Products in a Manufacturing Industry.” International Journal of Production Research .  doi:10.1080/00207543.2017.1334979.
  • Pugliese, V. , J. Mesa , and H. Maury . 2016. “Development of a Design Methodology for Reconfigurable Injection Molds.” International Journal of Advanced Manufacturing Technology  90 (1–4): 153–166. doi:10.1007/s00170-016-9348-z.
  • Puik, E. , D. Telgen , L. Van Moergestel , and D. Ceglarek . 2016. “Assessment of Reconfiguration Schemes for Reconfigurable Manufacturing Systems Based on Resources and Lead Time.” Robotics and Computer-Integrated Manufacturing 43 (2017): 30–38. doi:10.1016/j.rcim.2015.12.011.
  • Rehman, A.-U. , and A. Subash Babu . 2013. “Reconfigurations of Manufacturing Systems – An Empirical Study on Concepts, Research, and Applications.” The International Journal of Advanced Manufacturing Technology 66 (1–4): 107–124. doi:10.1007/s00170-012-4310-1.
  • Renna, P. 2010. “Capacity Reconfiguration Management in Reconfigurable Manufacturing Systems.” The International Journal of Advanced Manufacturing Technology 46 (1–4): 395–404. doi:10.1007/s00170-009-2071-2.
  • Ribeiro, L. , and J. Barata . 2011. “Re-thinking Diagnosis for Future Automation Systems: An Analysis of Current Diagnostic Practices and Their Applicability in Emerging IT Based Production Paradigms.” Computers in Industry 62 (7): 639–659. doi:10.1016/j.compind.2011.03.001.
  • Rösiö, C . 2011. “Considering Reconfigurability Characteristics in Production System Design.” In Enabling Manufacturing Competitiveness and Economic Sustainability: Proceedings of the 4th International Conference on Changeable, Agile, Reconfigurable and Virtual Production (CARV2011) , October 2–5, 57–62. Montreal, Canada. https://doi.org/10.1007/978-3-642-23860-4_9
  • Rösiö, C . 2012. “Supporting the Design of Reconfigurable Production Systems.” PhD diss., Mälardalen University Press. http://www.diva-portal.org/smash/record.jsf?pid=diva2:591325.
  • Rösiö, C. , and K. Säfsten . 2013. “Reconfigurable Production System Design – Theoretical and Practical Challenges.” Journal of Manufacturing Technology Management 24 (7): 998–1018. doi:10.1108/JMTM-02-2012-0021.
  • Saxena, L. K. , and P. K. Jain . 2012. “A Model and Optimisation Approach for Reconfigurable Manufacturing System Configuration Design.” International Journal of Production Research 50 (12): 3359–3381. doi:10.1080/00207543.2011.578161.
  • Scholz, Steffen , Tobias Mueller , Matthias Plasch , Hannes Limbeck , Raphael Adamietz , Tobias Iseringhausen , Daniel Kimmig , Markus Dickerhof , and Christian Woegerer . 2016. “A Modular Flexible Scalable and Reconfigurable System for Manufacturing of Microsystems Based on Additive Manufacturing and E-printing.” Robotics and Computer-Integrated Manufacturing 40: 14–23. doi:10.1016/j.rcim.2015.12.006.
  • Scholz-Reiter, B. , D. Lappe , and S. Grundstein . 2015. “Capacity Adjustment Based on Reconfigurable Machine Tools – Harmonising Throughput Time in Job-Shop Manufacturing.” CIRP Annals 64 (1): 403–406. doi:10.1016/j.cirp.2015.04.104.
  • Setchi, R. M ., and N. Lagos . 2004. “Reconfigurability and Reconfigurable Manufacturing Systems – State-of-the-art Review.” In IEEE International Conference on Industrial Informatics Berlin: IEEE. doi:10.1109/INDIN.2004.1417401.
  • Shabaka, A. I. , and H. A. Elmaraghy . 2007. “Generation of Machine Configurations Based on Product Features.” International Journal of Computer Integrated Manufacturing 20 (4): 355–369. doi:10.1080/09511920600740627.
  • Shah, Nilay . 2005. “Process Industry Supply Chains: Advances and Challenges.” Computers and Chemical Engineering 29 (6): 1225–1235. doi:10.1016/j.compchemeng.2005.02.023.
  • Shaik, A. M. , V. V. S. Kesava Rao , and C. S. Rao . 2014. “Development of Modular Manufacturing Systems – A Review.” International Journal of Advanced Manufacturing Technology 76 (5–8): 789–802. doi:10.1007/s00170-014-6289-2.
  • Silva Belisario, L. , and H. Pierreval . 2013. “A Conceptual Framework for Analyzing Adaptable and Reconfigurable Manufacturing Systems.” In Proceedings of 2013 International Conference on Industrial Engineering and Systems Management , Rabat: IEEE.
  • Singh, R. K. , N. Khilwani , and M. K. Tiwari . 2007. “Justification for the Selection of a Reconfigurable Manufacturing System: A Fuzzy Analytical Hierarchy Based Approach.” International Journal of Production Research 45 (14): 3165–3190. doi:10.1080/00207540600844043.
  • Son, S. Y. , T. L. Olsen , and D. Yip-Hoi . 2001. “An Approach to Scalability and Line Balancing for Reconfigurable Manufacturing Systems.” Integrated Manufacturing Systems 12: 500–511. doi:10.1108/09576060110407815.
  • Sousa, R. , and C. A. Voss . 2008. “Contingency Research in Operations Management Practices.” Journal of Operations Management 26 (6): 697–713.10.1016/j.jom.2008.06.001
  • Spicer, P. , and H. J. Carlo . 2007. “Integrating Reconfiguration Cost into the Design of Multi-period Scalable Reconfigurable Manufacturing Systems.” Journal of Manufacturing Science and Engineering 129 (1): 202. doi:10.1115/1.2383196.
  • Spicer, P. , D. Yip-Hoi , and Y. Koren . 2005. “Scalable Reconfigurable Equipment Design Principles.” International Journal of Production Research 43 (22): 4839–4852. doi:10.1080/00268970500183042.
  • Stoian, C ., and Ga. Frumuşanu . 2007. “Reconfigurable Manufacturing Systems Design Principles Researchers.” In The Annals “Dunareae De Jos” of Galati Fascicle V, Technologies in Mechanical Engineering . Galati: University of Galati.
  • Tang, Y. , and R. G. Qiu . 2004. “Integrated Design Approach for Virtual Production Line-based Reconfigurable Manufacturing Systems.” International Journal of Production Research 42 (18): 3803–3822. doi:10.1080/00207540410001699372.
  • Unglert, J. , S. Hoekstra , J. Jauregui-Becker , and F. Van Houten . 2016. “Towards Decision-support for Reconfigurable Manufacturing Systems Based on Computational Design Synthesis.” Procedia CIRP 41: 153–158. doi:10.1016/j.procir.2015.12.053.
  • Vafadar, A. , K. Hayward , and M. Tolouei-Rad . 2017. “Sensitivity Analysis for Justification of Utilising Special Purpose Machine Tools in the Presence of Uncertain Parameters.” International Journal of Production Research 55 (13): 3842–3861. doi:10.1080/00207543.2017.1308032.
  • Vafadar, A. , M. Tolouei-Rad , K. Hayward , and K. Abhary . 2016. “Technical Feasibility Analysis of Utilizing Special Purpose Machine Tools.” Journal of Manufacturing Systems 39: 53–62. doi:10.1016/j.jmsy.2016.02.003.
  • Valente, A. 2016. “Reconfigurable Industrial Robots: A Stochastic Programming Approach for Designing and Assembling Robotic Arms.” Robotics and Computer-Integrated Manufacturing 41: 115–126. doi:10.1016/j.rcim.2016.03.002.
  • Wang, W. , and Y. Koren . 2012. “Scalability Planning for Reconfigurable Manufacturing Systems.” Journal of Manufacturing Systems 31 (2): 83–91. doi:10.1016/j.jmsy.2011.11.001.
  • Weng, Y ., X. He , and Z. Pan . 2017. “Space Division Multiplexing Optical Communication Using Few-mode Fibers.” Optical Fiber Technology 36: 155–180. 10.1016/j.yofte.2017.03.009.
  • Wiendahl, H. P. , H. A. ElMaraghy , P. Nyhuis , M. F. Zäh , H. H. Wiendahl , N. Duffie , and M. Brieke . 2007. “Changeable Manufacturing – Classification, Design and Operation.” CIRP Annals 56 (2): 783–809. doi:10.1016/j.cirp.2007.10.003.
  • Wu, D. , D. W. Rosen , L. Wang , and D. Schaefer . 2015. “Cloud-based Design and Manufacturing: A New Paradigm in Digital Manufacturing and Design Innovation.” Computer-Aided Design 59: 1–14. doi:10.1016/j.cad.2014.07.006.
  • Yan, J. , and V. Vyatkin . 2013. “Distributed Software Architecture Enabling Peer-to-Peer Communicating Controllers.” IEEE Transactions on Industrial Informatics 9 (4): 2200–2209.10.1109/TII.2013.2258164
  • Yu, J. , Y. Yin , X. Sheng , and Z. Chen . 2003. “Modelling Strategies for Reconfigurable Assembly Systems.” Assembly Automation 23 (3): 266–272. doi:10.1108/01445150310486530.
  • Yu, M. , W. Zhang , and P. Klemm . 2007. “Multi-agent Based Reconfigurable Manufacturing Execution System.” 2007 IEEE International Conference on Industrial Engineering and Engineering Management , 718–722. Singapore. doi:10.1109/IEEM.2007.4419284.
  • Zhang, J. , F. T. S. Chan , P. Li , H. C. W. Lau , R. W. L. Ip , and P. Samaranayak . 2002. “Investigation of the Reconfigurable Control System for an Agile Manufacturing Cell.” International Journal of Production Research 40: 3709–3723. doi:10.1080/00207540210159554.
  • Zhang, Y. , G. Q. Huang , Q. Y. Dai , O. Ho , and F. J. Xu . 2010. “Agent-based Workflow Management for RFID-Enabled Real-time Reconfigurable Manufacturing.” International Journal of Computer Integrated Manufacturing 3052: 341–364. doi:10.1007/978-1-84882-287-0_14.
  • Zhang, J. , M. Khalgui , Z. Li , G. Frey , O. Mosbahi , and H. B. Salah . 2015. “Reconfigurable Coordination of Distributed Discrete Event Control Systems.” IEEE Transactions on Control Systems Technology 23 (1): 323–330. doi:10.1109/TCST.2014.2313352.
  • Zhang, G. , R. Liu , L. Gong , and Q. Huang . 2006. “An Analytical Comparison on Cost and Performance among DMS, AMS, FMS and RMS.” Chapter in Reconfigurable Manufacturing Systems and Transformable Factories , 659–673. Heidelberg: Springer, Berlin. doi:10.1007/3-540-29397-3_33.
  • Zhang, Linda L. , Qianli Xu , Yugang Yu , and Roger J. Jiao . 2012. “Domain-based Production Configuration with Constraint Satisfaction.” International Journal of Production Research 50 (24): 7149–7166. doi:10.1080/00207543.2011.640714.

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