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Articles

Solving cell formation and task scheduling in cellular manufacturing system by discrete bacteria foraging algorithm

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Pages 923-944 | Received 23 Jun 2015, Accepted 21 Oct 2015, Published online: 13 Nov 2015

References

  • Arkat, J., H. Abdollahzadeh, and H. Ghahve. 2012. “A New Branch and Bound Algorithm for Cell Formation Problem.” Applied Mathematical Modelling 36 (10): 5091–5100.
  • Arkat, J., M. H. Farahani, and F. Ahmadizar. 2012. “Multi-objective Genetic Algorithm for Cell Formation Problem Considering Cellular Layout and Operations Scheduling.” International Journal of Computer Integrated Manufacturing 25 (7): 625–635.
  • Arkat, J., M. H. Farahani, and L. Hosseini. 2012. “Integrating Cell Formation with Cellular Layout and Operations Scheduling.” The International Journal of Advanced Manufacturing Technology 61 (5–8): 637–647.
  • Ballakur, A. 1985. “An Investigation of Part Family/Machine Group Formation in Designing a Cellular Manufacturing System.” PhD thesis, University of Wisconsin, Madison, WI.
  • Boutsinas, B. 2013. “Machine-part Cell Formation Using Biclustering.” European Journal of Operational Research 230 (3): 563–572.
  • Chattopadhyay, M., S. Chattopadhyay, and P. K. Dan. 2011. “Machine-part Cell Formation through Visual Decipherable Clustering of Self-organizing Map.” The International Journal of Advanced Manufacturing Technology 52 (9–12): 1019–1030.
  • Defersha, F. M., and M. Chen. 2008. “A Linear Programming Embedded Genetic Algorithm for an Integrated Cell Formation and Lot Sizing Considering Product Quality.” European Journal of Operational Research 187 (1): 46–69.
  • Egilmez, G., B. Erenay, and G. A. Suer. 2014. “Stochastic Skill-based Manpower Allocation in a Cellular Manufacturing System.” Journal of Manufacturing Systems 33 (4): 578–588.
  • Eguia, I., J. Racero, F. Guerrero, and S. Lozano. 2013. “Cell Formation and Scheduling of Part Families for Reconfigurable Cellular Manufacturing Systems Using Tabu Search.” Simulation 89 (9): 1056–1072.
  • Elmi, A., M. Solimanpur, S. Topaloglu, and A. Elmi. 2011. “A Simulated Annealing Algorithm for the Job Shop Cell Scheduling Problem with Intercellular Moves and Reentrant Parts.” Computers & Industrial Engineering 61 (1): 171–178.
  • Gupta, N. S., D. Devika, and V. Panpaliya. 2014. “Some Clarifications on the Use of Mahalanobis Distance for the Machine-part Cell Formation Problem.” The International Journal of Advanced Manufacturing Technology 73 (5–8): 783–794.
  • Halat, K., and R. Bashirzadeh. 2015. “Concurrent Scheduling of Manufacturing Cells Considering Sequence-dependent Family Setup Times and Intercellular Transportation Times.” The International Journal of Advanced Manufacturing Technology 77 (9–12): 1907–1915.
  • Hamedi, M., G. R. Esmaeilian, N. Ismail, and M. K. A. Ariffin. 2012. “Capability-based Virtual Cellular Manufacturing Systems Formation in Dual-resource Constrained Settings Using Tabu Search.” Computers & Industrial Engineering 62 (4): 953–971.
  • Jain, A. K., S. C. Srivastava, S. N. Singh, and L. Srivastava. 2015. “Bacteria Foraging Optimization Based Bidding Strategy under Transmission Congestion.” IEEE Systems Journal 9 (1): 141–151.
  • Jain, S. K. 2015. “Optimization of Dual Resonance Stacked Patch Resonator by Neural Hybridized Bacteria Foraging Algorithm.” Microwave and Optical Technology Letters 57 (5): 1191–1199.
  • Kao, Y., and C. C. Chen. 2013. “A Differential Evolution Fuzzy Clustering Approach to Machine Cell Formation.” The International Journal of Advanced Manufacturing Technology 65 (9–12): 1247–1259.
  • Karthikeyan, S., M. Saravanan, and K. Ganesh. 2012. “GT Machine Cell Formation Problem in Scheduling for Cellular Manufacturing System Using Meta-Heuristic Method.” Procedia Engineering 38: 2537–2547.
  • Kia, R., A. Baboli, N. Javadian, R. Tavakkoli-Moghaddam, M. Kazemi, and J. Khorrami. 2012. “Solving a Group Layout Design Model of a Dynamic Cellular Manufacturing System with Alternative Process Routings, Lot Splitting and Flexible Reconfiguration by Simulated Annealing.” Computers & Operations Research 39 (11): 2642–2658.
  • King, J. R., and V. Nakornchai. 1982. “Machine-component Group Formation in Group Technology: Review and Extension.” International Journal of Production Research 20 (2): 117–133.
  • kioon, S. A., A. A. Bulgak, and T. Bektas. 2009. “Integrated Cellular Manufacturing Systems Design with Production Planning and Dynamic System Reconfiguration.” European Journal of Operational Research 192 (2): 414–428.
  • Logendran, R., P. Ramakrishna, and C. Sriskandarajah. 1994. “Tabu Search-based Heuristics for Cellular Manufacturing Systems in the Presence of Alternative Process Plans.” International Journal of Production Research 32 (2): 273–297.
  • Mahdavi, I., A. Aalaei, M. M. Paydar, and M. Solimanpur. 2010. “Designing a Mathematical Model for Dynamic Cellular Manufacturing Systems Considering Production Planning and Worker Assignment.” Computers and Mathematics with Applications 60 (4): 1014–1025.
  • Mishra, S. K., G. Panda, and R. Majhi. 2014. “Constrained Portfolio Asset Selection Using Multiobjective Bacteria Foraging Optimization.” Operational Research 14 (1): 113–145.
  • Nouri, H., and T. S. Hong. 2012. “A Bacteria Foraging Algorithm Based Cell Formation Considering Operation Time.” Journal of Manufacturing Systems 31 (3): 326–336.
  • Nouri, H., and S. H. Tang. 2013. “Development of Bacteria Foraging Optimization Algorithm for Cell Formation in Cellular Manufacturing System Considering Cell Load Variations.” Journal of Manufacturing Systems 32 (1): 20–31.
  • Nouri, H., S. H. Tang, B. T. Hang Tuah, and M. K. Anuar. 2010. “BASE: A Bacteria Foraging Algorithm for Cell Formation with Sequence Data.” Journal of Manufacturing Systems 29 (2–3): 102–110.
  • Panda, S., D. Mishra, B. Biswal, and M. Tripathy. 2014. “Revolute Manipulator Workspace Optimization Using a Modified Bacteria Foraging Algorithm: A Comparative Study.” Engineering Optimization 46 (2): 181–199.
  • Passino, K. M. 2002. “Biomimicry of Bacterial Foraging for Distributed Optimization and Control.” IEEE Control Systems Magazine 22 (3): 52–67.
  • Paydar, M. M., I. Mahdavi, I. Sharafuddin, and M. Solimanpur. 2010. “Applying Simulated Annealing for Designing Cellular Manufacturing Systems Using MDmTSP.” Computers & Industrial Engineering 59 (4): 929–936.
  • Rabbani, M., F. Jolai, N. Manavizadeh, F. Radmehr, and B. Javadi. 2012. “Solving a Bi-objective Cell Formation Problem with Stochastic Production Quantities by a Two-phase Fuzzy Linear Programming Approach.” The International Journal of Advanced Manufacturing Technology 58 (5–8): 709–722.
  • Rafiei, H., M. Rabbani, B. Nazaridoust, and S. S. Ramiyani. 2015. “Multi-objective Cell Formation Problem Considering Work-in-process Minimization.” The International Journal of Advanced Manufacturing Technology 76 (9–12): 1947–1955.
  • Renna, P., and M. Ambrico. 2015. “Design and Reconfiguration Models for Dynamic Cellular Manufacturing to Handle Market Changes.” International Journal of Computer Integrated Manufacturing 28 (2): 170–186.
  • Safaei, N., M. Saidi-Mehrabad, and M. S. Jabal-Ameli. 2008. “A Hybrid Simulated Annealing for Solving an Extended Model of Dynamic Cellular Manufacturing System.” European Journal of Operational Research 185 (2): 563–592.
  • Sakhaii, M., R. Tavakkoli-Moghaddam, M. Bagheri, and B. Vatani. Forthcoming. “A Robust Optimization Approach for an Integrated Dynamic Cellular Manufacturing System and Production Planning with Unreliable Machines.” Applied Mathematical Modelling.
  • Saravanan, M., and A. Noorul Haq. 2008. “A Scatter Search Method to Minimise Makespan of Cell Scheduling Problem.” International Journal of Agile Systems and Management 3 (12): 18–36.
  • Solimanpur, M., and A. Elmi. 2011. “A Tabu Search Approach for Group Scheduling in Buffer-constrained Flow Shop Cells.” International Journal of Computer Integrated Manufacturing 24 (3): 257–268.
  • Taghavifard, M. T. 2012. “Scheduling Cellular Manufacturing Systems Using ACO and GA.” International Journal of Applied Metaheuristic Computing 3 (1): 48–64.
  • Tang, J., X. Wang, I. Kaku, and K. Yung. 2010. “Optimization of Parts Scheduling in Multiple Cells Considering Intercell Move Using Scatter Search Approach.” Journal of Intelligent Manufacturing 21 (4): 525–537.
  • Tang, J., C. Yan, X. Wang, and C. Zeng. 2014. “Using Lagrangian Relaxation Decomposition with Heuristic to Integrate the Decisions of Cell Formation and Parts Scheduling Considering Intercell Moves.” IEEE Transactions on Automation Science and Engineering 11 (4): 1110–1121.
  • Tavakkoli-Moghaddam, R., N. Javadian, A. Khorrami, and Y. Gholipour-Kanani. 2010. “Design of a Scatter Search Method for a Novel Multi-criteria Group Scheduling Problem in a Cellular Manufacturing System.” Expert Systems with Applications 37 (3): 2661–2669.
  • Tripathy, M., and S. Mishra. 2015. “Coordinated Tuning of PSS and TCSC to Improve Hopf Bifurcation Margin in Multimachine Power System by a Modified Bacteria Foraging Algorithm.” Energy Systems 66: 97–109.
  • Venkataramanaiah, S. 2008. “Scheduling in Cellular Manufacturing Systems: An Heuristic Approach.” International Journal of Production Research 46 (2): 429–449.
  • Wang, X., J. Tang, and K. Yung. 2010. “A Scatter Search Approach with Dispatching Rules for a Joint Decision of Cell Formation and Parts Scheduling in Batches.” International Journal of Production Research 48 (12): 3513–3534.
  • Won, Y., and R. Logendran. 2015. “Effective Two-phase p-median Approach for the Balanced Cell Formation in the Design of Cellular Manufacturing System.” International Journal of Production Research 53 (9): 2730–2750.
  • Wu, X., C. H. Chu, Y. Wang, and D. Yue. 2007. “Genetic Algorithms for Integrating Cell Formation with Machine Layout and Scheduling.” Computers & Industrial Engineering 53 (2): 277–289.

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