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2016 | OriginalPaper | Buchkapitel

1. Background and Research Scope

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Abstract

With the rapidly developing global economy, today’s companies face greater challenges than ever to employ manufacturing systems capable of dealing with unexpected events and meeting customers’ specific requirements. In overcoming these challenges, flexibility is the key concept in the development of manufacturing systems. The issue of flexibility in manufacturing systems is not new and has attracted significant attention by researchers since the development of flexible manufacturing systems (FMS) four decades ago.

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Literatur
Zurück zum Zitat ABB Robotics (2013). Operating manual: RobotStudio. ABB Automation Technologies BA, Robotics. Vasteras, Sweden. ABB Robotics (2013). Operating manual: RobotStudio. ABB Automation Technologies BA, Robotics. Vasteras, Sweden.
Zurück zum Zitat Browne, J., Dubois, D., Rathmill, K., Sethi, P., & Steke, K. E. (1984). Classification of flexible manufacturing systems. Flexible Manufacturing Systems Magazine, 2(2), 114–117. Browne, J., Dubois, D., Rathmill, K., Sethi, P., & Steke, K. E. (1984). Classification of flexible manufacturing systems. Flexible Manufacturing Systems Magazine, 2(2), 114–117.
Zurück zum Zitat Bukchin, J., & Tzur, M. (2000). Design of flexible assembly line to minimize equipment cost. IIE Transactions, 32(7), 585–598. Bukchin, J., & Tzur, M. (2000). Design of flexible assembly line to minimize equipment cost. IIE Transactions, 32(7), 585–598.
Zurück zum Zitat Burnwal, S., & Deb, S. (2013). Scheduling optimization of flexible manufacturing system using cuckoo search-based approach. International Journal of Advanced Manufacturing Technology, 64(5), 951–959.CrossRef Burnwal, S., & Deb, S. (2013). Scheduling optimization of flexible manufacturing system using cuckoo search-based approach. International Journal of Advanced Manufacturing Technology, 64(5), 951–959.CrossRef
Zurück zum Zitat Chan, F. T. S., Chan, H. K., & Lau, H. C. W. (2002). The state of the art in simulation study on FMS scheduling: A comprehensive survey. International Journal of Advanced Manufacturing Technology, 19(11), 830–849.CrossRef Chan, F. T. S., Chan, H. K., & Lau, H. C. W. (2002). The state of the art in simulation study on FMS scheduling: A comprehensive survey. International Journal of Advanced Manufacturing Technology, 19(11), 830–849.CrossRef
Zurück zum Zitat Cheng, F. S. A. (2000). A methodology for developing robotic workcell simulation models. Winter Simulation Conference (pp. 1265–1271). Denver, USA. Cheng, F. S. A. (2000). A methodology for developing robotic workcell simulation models. Winter Simulation Conference (pp. 1265–1271). Denver, USA.
Zurück zum Zitat Clossen, R. J., & Malstrom, E. M. (1982). Effective capacity planning for automated factories requires workable simulation tools and responsive shop floor control. Industrial Engineering, 15, 73–79. Clossen, R. J., & Malstrom, E. M. (1982). Effective capacity planning for automated factories requires workable simulation tools and responsive shop floor control. Industrial Engineering, 15, 73–79.
Zurück zum Zitat Daoud, S., Chehade, H., Yalaoui, F., & Amodeo, L. (2014). Solving a robotic assembly line balancing problem using efficient hybrid methods. Journal of Heuristics, 20(3), 235–259.CrossRef Daoud, S., Chehade, H., Yalaoui, F., & Amodeo, L. (2014). Solving a robotic assembly line balancing problem using efficient hybrid methods. Journal of Heuristics, 20(3), 235–259.CrossRef
Zurück zum Zitat Delchambre, A. (1992). Computer-aided assembly planning. London: Chapman & Hall. Delchambre, A. (1992). Computer-aided assembly planning. London: Chapman & Hall.
Zurück zum Zitat Gao, J., Sun, L., Wang, L., & Gen, M. (2009). An efficient approach for type II robotic assembly line balancing problems. Computers & Industrial Engineering, 56(3), 1065–1080.CrossRef Gao, J., Sun, L., Wang, L., & Gen, M. (2009). An efficient approach for type II robotic assembly line balancing problems. Computers & Industrial Engineering, 56(3), 1065–1080.CrossRef
Zurück zum Zitat Gilbert, P. R., Coupez, D., Peng, Y. M., & Delchambre, A. (1990). Scheduling of a multi-robot assembly cell. Computer Integrated Manufacturing Systems, 3(4), 236–245.CrossRef Gilbert, P. R., Coupez, D., Peng, Y. M., & Delchambre, A. (1990). Scheduling of a multi-robot assembly cell. Computer Integrated Manufacturing Systems, 3(4), 236–245.CrossRef
Zurück zum Zitat Groover, M. P. (2008). Automation, production systems, and computer-integrated manufacturing. Upper Saddle River, NJ: Pearson Education Inc. Groover, M. P. (2008). Automation, production systems, and computer-integrated manufacturing. Upper Saddle River, NJ: Pearson Education Inc.
Zurück zum Zitat Joseph, O. A., & Sridharan, R. (2011). Effects of routing flexibility, sequencing flexibility and scheduling decision rules on the performance of a flexible manufacturing system. International Journal of Advanced Manufacturing Technology, 56(1–4), 291–306.CrossRef Joseph, O. A., & Sridharan, R. (2011). Effects of routing flexibility, sequencing flexibility and scheduling decision rules on the performance of a flexible manufacturing system. International Journal of Advanced Manufacturing Technology, 56(1–4), 291–306.CrossRef
Zurück zum Zitat Kazerooni, A. (1997). Scheduling flexible manufacturing systems using multiple criteria simulation (Doctor of Philosophy, University of South Australia). Kazerooni, A. (1997). Scheduling flexible manufacturing systems using multiple criteria simulation (Doctor of Philosophy, University of South Australia).
Zurück zum Zitat Lee, J. K., & Lee, T. E. (2002). Automata-based supervisory control logic design for a multi-robot assembly cell. International Journal of Computer Integrated Manufacturing, 15(4), 319–334.CrossRef Lee, J. K., & Lee, T. E. (2002). Automata-based supervisory control logic design for a multi-robot assembly cell. International Journal of Computer Integrated Manufacturing, 15(4), 319–334.CrossRef
Zurück zum Zitat Lee, H. F., Srinivasan, M. M., & Yano, C. A. (2006). A framework for capacity planning and machine configuration in flexible assembly systems. International Journal of Flexible Manufacturing Systems, 18(4), 239–268.CrossRef Lee, H. F., Srinivasan, M. M., & Yano, C. A. (2006). A framework for capacity planning and machine configuration in flexible assembly systems. International Journal of Flexible Manufacturing Systems, 18(4), 239–268.CrossRef
Zurück zum Zitat Levitin, G., Rubinovitz, J., & Shnits, B. (2006). A genetic algorithm for robotic assembly line balancing. European Journal of Operational Research, 168(3), 811–825.MathSciNetCrossRefMATH Levitin, G., Rubinovitz, J., & Shnits, B. (2006). A genetic algorithm for robotic assembly line balancing. European Journal of Operational Research, 168(3), 811–825.MathSciNetCrossRefMATH
Zurück zum Zitat Maccarthy, B. L., & Liu, J. (1993). A new classification scheme for flexible manufacturing systems. International Journal of Production Research, 31(2), 299–309.CrossRef Maccarthy, B. L., & Liu, J. (1993). A new classification scheme for flexible manufacturing systems. International Journal of Production Research, 31(2), 299–309.CrossRef
Zurück zum Zitat Makino, H. (1989). The comparison between robotic assembly line and robotic assembly cell. In Proceedings of the 10th International Conference on Assembly Automation (pp. 1–10). Canazawa, Japan. Makino, H. (1989). The comparison between robotic assembly line and robotic assembly cell. In Proceedings of the 10th International Conference on Assembly Automation (pp. 1–10). Canazawa, Japan.
Zurück zum Zitat Manivannan, S. (1993). Robotic collision avoidance in a flexible assembly cell using a dynamic knowledge base. IEEE Transactions on Systems, Man, and Cybernetics, 23(3), 766–782.CrossRef Manivannan, S. (1993). Robotic collision avoidance in a flexible assembly cell using a dynamic knowledge base. IEEE Transactions on Systems, Man, and Cybernetics, 23(3), 766–782.CrossRef
Zurück zum Zitat Marian, R. M., Kargas, A., Luong, L. H. S., & Abhary, K. (2003). A framework to planning robotic flexible assembly cells. In 32nd International Conference on Computers and Industrial Engineering (pp. 607–615). Limerick, Ireland. Marian, R. M., Kargas, A., Luong, L. H. S., & Abhary, K. (2003). A framework to planning robotic flexible assembly cells. In 32nd International Conference on Computers and Industrial Engineering (pp. 607–615). Limerick, Ireland.
Zurück zum Zitat Mohamed, S. B., Petty, D. J., Harrison, D. K., & Rigby, R. (2001). A cell management system to support robotic assembly. The International Journal of Advanced Manufacturing Technology, 18(8), 598–604.CrossRef Mohamed, S. B., Petty, D. J., Harrison, D. K., & Rigby, R. (2001). A cell management system to support robotic assembly. The International Journal of Advanced Manufacturing Technology, 18(8), 598–604.CrossRef
Zurück zum Zitat Nakase, N., Yamada, T., & Matsui, M. (2002). A management design approach to a simple flexible assembly system. International Journal of Production Economics, 76(3), 281–292.CrossRef Nakase, N., Yamada, T., & Matsui, M. (2002). A management design approach to a simple flexible assembly system. International Journal of Production Economics, 76(3), 281–292.CrossRef
Zurück zum Zitat Ouelhadj, D., & Petrovic, S. (2009). A survey of dynamic scheduling in manufacturing systems. Journal of Scheduling, 12(4), 417–431.MathSciNetCrossRefMATH Ouelhadj, D., & Petrovic, S. (2009). A survey of dynamic scheduling in manufacturing systems. Journal of Scheduling, 12(4), 417–431.MathSciNetCrossRefMATH
Zurück zum Zitat Pan, Z., Polden, J., Larkin, N., Duin, S. V., & Norrish, J. (2012). Recent progress on programming methods for industrial robots. Robotics and Computer Integrated Manufacturing, 28(2), 87–94.CrossRef Pan, Z., Polden, J., Larkin, N., Duin, S. V., & Norrish, J. (2012). Recent progress on programming methods for industrial robots. Robotics and Computer Integrated Manufacturing, 28(2), 87–94.CrossRef
Zurück zum Zitat Park, T., Lee, H., & Lee, H. (2001). FMS design model with multiple objectives using compromise programming. International Journal of Production Research, 39(15), 3513–3528.CrossRef Park, T., Lee, H., & Lee, H. (2001). FMS design model with multiple objectives using compromise programming. International Journal of Production Research, 39(15), 3513–3528.CrossRef
Zurück zum Zitat Qi, L., Yin, X., Wang, H., & Tao, L. (2008). Virtual engineering: Challenges and solutions for intuitive offline programming for industrial robot. In Proceedings of the IEEE International Conference on Robotics, Automation and Mechatronics (pp. 12–17). Chengdu, China. Qi, L., Yin, X., Wang, H., & Tao, L. (2008). Virtual engineering: Challenges and solutions for intuitive offline programming for industrial robot. In Proceedings of the IEEE International Conference on Robotics, Automation and Mechatronics (pp. 12–17). Chengdu, China.
Zurück zum Zitat Rosati, G., Faccio, M., Carli, A., & Rossi, A. (2013). Fully flexible assembly systems (F-FAS). Assembly Automation, 33(2), 165–174.CrossRef Rosati, G., Faccio, M., Carli, A., & Rossi, A. (2013). Fully flexible assembly systems (F-FAS). Assembly Automation, 33(2), 165–174.CrossRef
Zurück zum Zitat Rosell, J. (2004). Assembly and task planning using Petri nets: A survey. Journal of Engineering Manufacture, 218(8), 987–994.CrossRef Rosell, J. (2004). Assembly and task planning using Petri nets: A survey. Journal of Engineering Manufacture, 218(8), 987–994.CrossRef
Zurück zum Zitat Salman, M., Ionescu, F., & Taha, R. (2009). Kinematic modeling and simulation of a scara robot by using solid dynamics and verification by MATLAB/Simulink. European Journal of Scientific Research, 37(3), 388–405. Salman, M., Ionescu, F., & Taha, R. (2009). Kinematic modeling and simulation of a scara robot by using solid dynamics and verification by MATLAB/Simulink. European Journal of Scientific Research, 37(3), 388–405.
Zurück zum Zitat Sawik, T. (1998). A lexicographic approach to bi-objective loading of a flexible assembly system. European Journal of Operational Research, 107(3), 656–668.MathSciNetCrossRefMATH Sawik, T. (1998). A lexicographic approach to bi-objective loading of a flexible assembly system. European Journal of Operational Research, 107(3), 656–668.MathSciNetCrossRefMATH
Zurück zum Zitat Sawik, T. (1999). Production planning and scheduling in flexible assembly systems. Berlin: Springer.CrossRef Sawik, T. (1999). Production planning and scheduling in flexible assembly systems. Berlin: Springer.CrossRef
Zurück zum Zitat Sawik, T. (2004). Loading and scheduling of a flexible assembly system by mixed integer programming. European Journal of Operational Research, 154(1), 1–19.MathSciNetCrossRefMATH Sawik, T. (2004). Loading and scheduling of a flexible assembly system by mixed integer programming. European Journal of Operational Research, 154(1), 1–19.MathSciNetCrossRefMATH
Zurück zum Zitat Schneeweiss, C. (1995). Hierarchical structures in organizations: A conceptual framework. European Journal of Operational Research, 86(1), 4–31.CrossRefMATH Schneeweiss, C. (1995). Hierarchical structures in organizations: A conceptual framework. European Journal of Operational Research, 86(1), 4–31.CrossRefMATH
Zurück zum Zitat Stecke, K. E. (1985). Design, planning, scheduling and control problems in flexible manufacturing systems. Annals of Operations Research, 3(1), 3–12.MathSciNetCrossRef Stecke, K. E. (1985). Design, planning, scheduling and control problems in flexible manufacturing systems. Annals of Operations Research, 3(1), 3–12.MathSciNetCrossRef
Zurück zum Zitat Taylan, M., & Canan, L. (2005). Mathematical modelling, simulation and experimental verification of a SCARA robot. Simulation Modelling Practice and Theory, 13(3), 257–271.CrossRef Taylan, M., & Canan, L. (2005). Mathematical modelling, simulation and experimental verification of a SCARA robot. Simulation Modelling Practice and Theory, 13(3), 257–271.CrossRef
Zurück zum Zitat Udhayakumar, P., & Kumanan, S. (2010). Sequencing and scheduling of job and tool in a flexible manufacturing system using ant colony optimization algorithm. International Journal of Advanced Manufacturing Technology, 50(9–12), 1075–1084.CrossRef Udhayakumar, P., & Kumanan, S. (2010). Sequencing and scheduling of job and tool in a flexible manufacturing system using ant colony optimization algorithm. International Journal of Advanced Manufacturing Technology, 50(9–12), 1075–1084.CrossRef
Zurück zum Zitat Udhayakumar, P., & Kumanan, S. (2012). Integrated scheduling of flexible manufacturing system using evolutionary algorithms. International Journal of Advanced Manufacturing Technology, 61(5–8), 621–635.CrossRef Udhayakumar, P., & Kumanan, S. (2012). Integrated scheduling of flexible manufacturing system using evolutionary algorithms. International Journal of Advanced Manufacturing Technology, 61(5–8), 621–635.CrossRef
Zurück zum Zitat Yoosefelahi, A., Aminnayeri, M., Mosadegh, H., & Ardakani, H. D. (2012). Type II robotic assembly line balancing problem: An evolution strategies algorithm for a multi-objective model. Journal of Manufacturing Systems, 31(2), 139–151.CrossRef Yoosefelahi, A., Aminnayeri, M., Mosadegh, H., & Ardakani, H. D. (2012). Type II robotic assembly line balancing problem: An evolution strategies algorithm for a multi-objective model. Journal of Manufacturing Systems, 31(2), 139–151.CrossRef
Zurück zum Zitat Zhang, D., & Qi, L. (2008). Virtual engineering: Optimal cell layout method for improving productivity for industrial robot. In Proceedings of the IEEE International Conference on Robotics, Automation and Mechatronics (pp. 6–11). Zhang, D., & Qi, L. (2008). Virtual engineering: Optimal cell layout method for improving productivity for industrial robot. In Proceedings of the IEEE International Conference on Robotics, Automation and Mechatronics (pp. 6–11).
Zurück zum Zitat Zhanga, W., Freiheitb, T., & Yang, H. (2005). Dynamic scheduling in flexible assembly system based on timed Petri nets model. Robotics & Computer Integrated Manufacturing, 21(21), 550–558.CrossRef Zhanga, W., Freiheitb, T., & Yang, H. (2005). Dynamic scheduling in flexible assembly system based on timed Petri nets model. Robotics & Computer Integrated Manufacturing, 21(21), 550–558.CrossRef
Metadaten
Titel
Background and Research Scope
verfasst von
Khalid Karam Abd
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-26296-3_1