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Original Articles

A fuzzy approach to process plan selection

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Pages 1265-1279 | Received 01 Jul 1993, Published online: 07 May 2007

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N. Mishra, V. Kumar, Felix T.S. Chan & M.K. Tiwari. (2012) A CBFSA approach to resolve the distributed manufacturing process planning problem in a supply chain environment. International Journal of Production Research 50:2, pages 535-550.
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W. D. Li, S. K. Ong & A. Y. C. Nee. (2004) Optimization of process plans using a constraint-based tabu search approach. International Journal of Production Research 42:10, pages 1955-1985.
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W. D. Li, S. K. Ong & A. Y. C. Nee. (2004) A Web-based Process Planning Optimization System for Distributed Design. Computer-Aided Design and Applications 1:1-4, pages 367-376.
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ALEXANDER WEINTRAUB, DENIS CORMIER, THOM HODGSON, RUSSELL KING, JAMES WILSON & ANDREW ZOZOM. (1999) Scheduling with alternatives: a link between process planning and scheduling. IIE Transactions 31:11, pages 1093-1102.
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C. Lowe & J. D. Tedford. (1997) Fuzzy Production Scheduling for JIT Manufacturing. Intelligent Automation & Soft Computing 3:4, pages 319-329.
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Alexander Weintraub & Denis Cormier. (1997) A Testbed for Scheduling with Alternative Process Plans. Intelligent Automation & Soft Computing 3:3, pages 221-228.
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HONG-CHAO ZHANG & SRINIDHI MALLUR. (1994) An integrated model of process planning and production scheduling. International Journal of Computer Integrated Manufacturing 7:6, pages 356-364.
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Sonja Rosenberg, Sandra Huster, Sabri Baazouzi, Simon Glöser-Chahoud, Anwar Al Assadi & Frank Schultmann. (2022) Field Study and Multimethod Analysis of an EV Battery System Disassembly. Energies 15:15, pages 5324.
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Güllü DEĞİRMENCİ & Mehmet Nurettin UĞURAL. (2022) BULANIK CPM İLE DOĞRUSAL PROGRAMLAMA: İNŞAAT ENDÜSTRİSİNDE BİR VAKA ÇALIŞMASILINEAR PROGRAMMING WITH FUZZY CPM: A CASE STUDY IN CONSTRUCTION SECTOR. Mühendislik Bilimleri ve Tasarım Dergisi 10:2, pages 466-481.
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Gökhan Özçelik & Makbule Nalkıran. (2021) An Extension of EDAS Method Equipped with Trapezoidal Bipolar Fuzzy Information: An Application from Healthcare System. International Journal of Fuzzy Systems 23:7, pages 2348-2366.
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Wenbo Wu, Zhengdong Huang, Kangxiang Wu & Yongfu Chen. (2020) An optimization approach for setup planning and operation sequencing with tolerance constraints. The International Journal of Advanced Manufacturing Technology 106:11-12, pages 4965-4985.
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Syed Abou Iltaf Hussain, Sankar Prasad Mondal & Uttam Kumar Mandal. 2018. Handbook of Research on Modeling, Analysis, and Application of Nature-Inspired Metaheuristic Algorithms. Handbook of Research on Modeling, Analysis, and Application of Nature-Inspired Metaheuristic Algorithms 298 330 .
Wenbo Wu, Jiani Zeng & Zhengdong Huang. (2018) A hybrid optimization approach for setup planning with tolerance constraints. MATEC Web of Conferences 249, pages 03012.
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Milica Petrović, Marko Mitić, Najdan Vuković & Zoran Miljković. (2015) Chaotic particle swarm optimization algorithm for flexible process planning. The International Journal of Advanced Manufacturing Technology 85:9-12, pages 2535-2555.
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Shengping Lv & Lihong Qiao. (2013) A cross-entropy-based approach for the optimization of flexible process planning. The International Journal of Advanced Manufacturing Technology 68:9-12, pages 2099-2110.
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Kusum Deep, Pinkey Chauhan & Millie Pant. (2012) Multi task selection including part mix, tool allocation and process plans in CNC machining centers using new binary PSO. Multi task selection including part mix, tool allocation and process plans in CNC machining centers using new binary PSO.
Guohua Ma & Fu Zhang. 2012. Variants of Evolutionary Algorithms for Real-World Applications. Variants of Evolutionary Algorithms for Real-World Applications 205 244 .
Nishikant Mishra & Vikas Kumar. 2011. Evolutionary Computing in Advanced Manufacturing. Evolutionary Computing in Advanced Manufacturing 77 94 .
Jose V. Abellan-Nebot, Jian Liu & F. Romero Subiron. (2011) Design of multi-station manufacturing processes by integrating the stream-of-variation model and shop-floor data. Journal of Manufacturing Systems 30:2, pages 70-82.
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M Hazarika, S Deb, U S Dixit & J P Davim. (2011) Fuzzy set-based set-up planning system with the ability for online learning. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 225:2, pages 247-263.
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A. Azadeh, M. Saberi, S.F. Ghaderi, A. Gitiforouz & V. Ebrahimipour. (2008) Improved estimation of electricity demand function by integration of fuzzy system and data mining approach. Energy Conversion and Management 49:8, pages 2165-2177.
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P. P. Mujumdar & Subhankar Karmakar. 2008. Fuzzy Multi-Criteria Decision Making. Fuzzy Multi-Criteria Decision Making 453 482 .
Honghui Zhan, Xinyu Shao, Guojun Zhan & Haiping Zhu. (2007) A Novel Approach for Process Planning Using Polychromatic Sets and Fuzzy Sets. A Novel Approach for Process Planning Using Polychromatic Sets and Fuzzy Sets.
M. A. Azadeh, S. F. Ghaderi, A. Guitiforooz & M. Saberi. (2006) Improved Estimation of Electricity Demand Function by Integration of Fuzzy System and Data Mining Approach. Improved Estimation of Electricity Demand Function by Integration of Fuzzy System and Data Mining Approach.
Felix. S. Chan, Vikas Kumar & M. Tiwari. (2006) Optimizing the Performance of an Integrated Process Planning and Scheduling Problem: An AIS-FLC based Approach. Optimizing the Performance of an Integrated Process Planning and Scheduling Problem: An AIS-FLC based Approach.
M K Tiwari, Y Dashora, S Kumar & R Shankar. (2006) Ant colony optimization to select the best process plan in an automated manufacturing environment. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 220:9, pages 1457-1472.
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Cengiz Kahraman, Murat Gülbay & Özgür Kabak. 2006. Fuzzy Applications in Industrial Engineering. Fuzzy Applications in Industrial Engineering 1 55 .
W.D. Li, S.K. Ong & A.Y.C. Nee. (2005) A Web-based process planning optimization system for distributed design. Computer-Aided Design 37:9, pages 921-930.
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W.D. Li. (2005) A Web-based service for distributed process planning optimization. Computers in Industry 56:3, pages 272-288.
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Yasar Becerikli, M. Mucteba Tutuncu & H. Engin Demiray. 2005. Knowledge-Based Intelligent Information and Engineering Systems. Knowledge-Based Intelligent Information and Engineering Systems 378 385 .
Jie Zhang, Liang Gao, Felix T.S. Chan & Peigen Li. (2003) A holonic architecture of the concurrent integrated process planning system. Journal of Materials Processing Technology 139:1-3, pages 267-272.
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Jin & Balasubramaniam. (2003) A fuzzy model for environmental benign process planning selection. A fuzzy model for environmental benign process planning selection.
F T S Chan, J Zhang & P Li. (2006) Modelling of integrated, distributed and cooperative process planning system using an agent-based approach. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 215:10, pages 1437-1451.
Crossref
G. DEVEDŽIĆ. (2011) LINGUISTIC AND CHOQUET INTEGRAL BASED EVALUATION IN PROCESS PLANNING. International Journal of Uncertainty, Fuzziness and Knowledge-Based Systems 09:supp01, pages 115-129.
Crossref
M.K. Tiwari, S.K. Tiwari, D. Roy, N.K. Vidyarthi & S. Kameshwaran. (1999) A genetic algorithm based approach to solve process plan selection problems. A genetic algorithm based approach to solve process plan selection problems.
Chiung Moon, Yin-Zhen Li & M. Gen. (1998) Evolutionary algorithm for flexible process sequencing with multiple objectives. Evolutionary algorithm for flexible process sequencing with multiple objectives.
Shih-Yu Wei, Chih-Chung Lo & C. Alec Chang. (1997) Using throughput profit for selecting manufacturing process plan. Computers & Industrial Engineering 32:4, pages 939-948.
Crossref
Horris C. Leung. (1996) Annotated bibliography on computer-aided process planning. The International Journal of Advanced Manufacturing Technology 12:5, pages 309-329.
Crossref
U. Bilge, M. Kalay & O. Turkay. (1996) An integrated computer-aided process planning system for injection mold manufacturing. An integrated computer-aided process planning system for injection mold manufacturing.
S.H. Huang, H.-C. Zhang, S. Sun & H.H. Li. (1996) Function approximation and neural-fuzzy approach to machining process selection. IEEE Transactions on Components, Packaging, and Manufacturing Technology: Part C 19:1, pages 9-18.
Crossref
O.L. Chau & Celik Parkan. (1995) Selection of a manufacturing process with multiple attributes: A case study. Journal of Engineering and Technology Management 12:3, pages 219-237.
Crossref
Zhengxu Zhao. (1995) Process planning with multi-level fuzzy decision-making. Computer Integrated Manufacturing Systems 8:4, pages 245-254.
Crossref
Wurong Shih & K. Srihari. (1995) Distributed Artificial Intelligence in manufacturing systems control. Computers & Industrial Engineering 29:1-4, pages 199-203.
Crossref
P.G. Maropoulos. (1995) Review of research in tooling technology, process modelling and process planning part II: Process planning. Computer Integrated Manufacturing Systems 8:1, pages 13-20.
Crossref

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