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Original Articles

Scheduling in robotic cells: process flexibility and cell layout

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Pages 2105-2121 | Received 01 Feb 2006, Published online: 19 Feb 2008

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Yumin He & Milton L. Smith. (2023) Investigation of scheduling integration of flexible manufacturing systems for mass customisation. International Journal of Production Research 0:0, pages 1-23.
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Chu A. My, Chi Hieu Le, Michael Packianather & Erik L.J. Bohez. (2019) Novel robot arm design and implementation for hot forging press automation. International Journal of Production Research 57:14, pages 4579-4593.
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Kfir Arviv, Helman Stern & Yael Edan. (2016) Collaborative reinforcement learning for a two-robot job transfer flow-shop scheduling problem. International Journal of Production Research 54:4, pages 1196-1209.
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Zhu Wang & Bing-Hai Zhou. (2015) Bottleneck-based scheduling method of multi-robot cells with residency constraints. International Journal of Computer Integrated Manufacturing 28:12, pages 1237-1251.
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Mehdi Foumani, Indra Gunawan & Yousef Ibrahim. (2014) Scheduling rotationally arranged robotic cells served by a multi-function robot. International Journal of Production Research 52:13, pages 4037-4058.
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Ronald G. Askin. (2013) Contributions to the design and analysis of cellular manufacturing systems. International Journal of Production Research 51:23-24, pages 6778-6787.
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Mehdi Foumani & Kouroush Jenab. (2013) Analysis of flexible robotic cells with improved pure cycle. International Journal of Computer Integrated Manufacturing 26:3, pages 201-215.
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Pengyu Yan, Chengbin Chu, Naiding Yang & Ada Che. (2010) A branch and bound algorithm for optimal cyclic scheduling in a robotic cell with processing time windows. International Journal of Production Research 48:21, pages 6461-6480.
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S. Shafiei-Monfared, K. Salehi-Gilani & K. Jenab. (2009) Productivity analysis in a robotic cell. International Journal of Production Research 47:23, pages 6651-6662.
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Juniqi Liu, Zeqiang Zhang, Juhua Gong, Feng Chen, Tao Yin & Yu Zhang. (2022) A novel hybrid clonal selection algorithm for the corridor allocation problem with irregular material handling positions. Computers & Industrial Engineering 168, pages 108118.
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Bahareh Vaisi. (2022) A review of optimization models and applications in robotic manufacturing systems: Industry 4.0 and beyond. Decision Analytics Journal 2, pages 100031.
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Yuanju Qu, Xinguo Ming, Siqi Qiu, Zhiwen Liu, Xianyu Zhang & Zengtao Hou. (2020) Process optimization through closed-loop Kaizen with discrete event simulation: A case study in China. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 235:3, pages 568-579.
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N Lakshminarayanan, K Surendra babu, Siddanth Amin, Ashif Sulficker & Muhammad Nazal Abdul Nassar. (2020) Design optimization of robotic work cell layout in automotive industries. IOP Conference Series: Materials Science and Engineering 993:1, pages 012036.
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Mazyar Ghadiri Nejad, Seyed Mahdi Shavarani, Hüseyin Güden & Reza Vatankhah Barenji. (2019) Process sequencing for a pick-and-place robot in a real-life flexible robotic cell. The International Journal of Advanced Manufacturing Technology 103:9-12, pages 3613-3627.
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Mazyar Ghadiri Nejad, Seyed Mahdi Shavarani, Béla Vizvári & Reza Vatankhah Barenji. (2018) Trade-off between process scheduling and production cost in cyclic flexible robotic cells. The International Journal of Advanced Manufacturing Technology 96:1-4, pages 1081-1091.
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Hakan Gultekin, Betul Coban & Vahid Eghbal Akhlaghi. (2018) Cyclic scheduling of parts and robot moves in m-machine robotic cells. Computers & Operations Research 90, pages 161-172.
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Mazyar Ghadiri Nejad, Hüseyin Güden, Béla Vizvári & Reza Vatankhah Barenji. (2018) A mathematical model and simulated annealing algorithm for solving the cyclic scheduling problem of a flexible robotic cell. Advances in Mechanical Engineering 10:1, pages 168781401775391.
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A Malini & Dileep G Menon. (2017) Technological innovations in the banking sector in India: An analysis. Technological innovations in the banking sector in India: An analysis.
Hakan Gultekin, Özden O. Dalgıç & M. Selim Akturk. (2017) Pure cycles in two-machine dual-gripper robotic cells. Robotics and Computer-Integrated Manufacturing 48, pages 121-131.
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Jiafan Zhang & Xinyu Fang. (2016) Challenges and key technologies in robotic cell layout design and optimization. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 231:15, pages 2912-2924.
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Christen Rose-Anderssen, James Baldwin & Keith Ridgway. (2017) Manufacturing systematics and cladistics: state of the art and generic classification. Journal of Manufacturing Technology Management 28:5, pages 655-685.
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Jiafan Zhang, Xinyu Fang & Liwei Qi. (2016) Sensitivity-analysis based method in single-robot cells cost-effective design and optimization. Robotics and Computer-Integrated Manufacturing 38, pages 9-15.
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M. H. Fazel Zarandi & H. Mosadegh. 2016. Fuzzy Logic in Its 50th Year. Fuzzy Logic in Its 50th Year 283 308 .
Jiafan Zhang, Xinyu Fang & Liwei Qi. (2014) LCM cycle based optimal scheduling in robotic cell with parallel workstations. LCM cycle based optimal scheduling in robotic cell with parallel workstations.
M.H. Fazel Zarandi, H. Mosadegh & M. Fattahi. (2013) Two-machine robotic cell scheduling problem with sequence-dependent setup times. Computers & Operations Research 40:5, pages 1420-1434.
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Fariborz Jolai, Mehdi Foumani, Reza Tavakoli-Moghadam & Parviz Fattahi. (2011) Cyclic scheduling of a robotic flexible cell with load lock and swap. Journal of Intelligent Manufacturing 23:5, pages 1885-1891.
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Serdar Yildiz, Oya Ekin Karasan & M. Selim Akturk. (2012) An analysis of cyclic scheduling problems in robot centered cells. Computers & Operations Research 39:6, pages 1290-1299.
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Ming-Shan Lu & Tong Chie Hsieh. (2011) A predictive approach for dispatching of tasks in a pull-type robotic cell. Expert Systems with Applications 38:7, pages 8825-8834.
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Hakan Gultekin, Oya Ekin Karasan & M. Selim Akturk. (2009) Pure cycles in flexible robotic cells. Computers & Operations Research 36:2, pages 329-343.
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