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Original Articles

A probabilistic cost-based due date assignment model for job shops

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Pages 2817-2834 | Received 01 Dec 1992, Published online: 27 Apr 2007

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Manuel Schneckenreither, Stefan Haeussler & Christoph Gerhold. (2021) Order release planning with predictive lead times: a machine learning approach. International Journal of Production Research 59:11, pages 3285-3303.
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Liam Y. Hsieh, Kuo-Hao Chang & Chen-Fu Chien. (2014) Efficient development of cycle time response surfaces using progressive simulation metamodeling. International Journal of Production Research 52:10, pages 3097-3109.
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Y.T. Tai, W.L. Pearn & J.H. Lee. (2012) Cycle time estimation for semiconductor final testing processes with Weibull-distributed waiting time. International Journal of Production Research 50:2, pages 581-592.
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Pei-Chann Chang, Yen-Wen Wang & Ching-Jung Ting. (2008) A fuzzy neural network for the flow time estimation in a semiconductor manufacturing factory. International Journal of Production Research 46:4, pages 1017-1029.
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Mansour Abdoli & F. Fred Choobineh. (2005) Empirical Bayes forecasting methods for job flow times. IIE Transactions 37:7, pages 635-649.
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S. Moses, H. Grant, L. Gruenwald & S. Pulat. (2004) Real-time due-date promising by build-to-order environments. International Journal of Production Research 42:20, pages 4353-4375.
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S. Y. Hsu & D. Y. Sha. (2004) Due date assignment using artificial neural networks under different shop floor control strategies. International Journal of Production Research 42:9, pages 1727-1745.
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SHU-HSING CHUNG & HUNG-WEN HUANG. (2002) Cycle time estimation for wafer fab with engineering lots. IIE Transactions 34:2, pages 105-118.
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Articles from other publishers (16)

Manuel Schneckenreither, Stefan Haeussler & Juanjo Peiró. (2022) Average reward adjusted deep reinforcement learning for order release planning in manufacturing. Knowledge-Based Systems 247, pages 108765.
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Vinod K.T.S. Prabagaran & O.A. Joseph. (2019) Dynamic due date assignment method. Journal of Manufacturing Technology Management 30:6, pages 987-1003.
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Khalid Karam AbdKhalid Karam Abd. 2016. Intelligent Scheduling of Robotic Flexible Assembly Cells. Intelligent Scheduling of Robotic Flexible Assembly Cells 69 92 .
George Ioannou & Stavrianna Dimitriou. (2012) Lead time estimation in MRP/ERP for make-to-order manufacturing systems. International Journal of Production Economics 139:2, pages 551-563.
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Sheng-Yuan Hsu. (2010) A hybrid due-date fulfilled forecasting based on clustering and decision trees. A hybrid due-date fulfilled forecasting based on clustering and decision trees.
W.L. Pearn, Yu-Ting Tai & J.H. Lee. (2009) Statistical Approach for Cycle Time Estimation in Semiconductor Packaging Factories. IEEE Transactions on Electronics Packaging Manufacturing 32:3, pages 198-205.
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F. Alarcón, M.M.E. Alemany & A. Ortiz. (2009) Conceptual framework for the characterization of the order promising process in a collaborative selling network context. International Journal of Production Economics 120:1, pages 100-114.
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Tsai-Chi Kuo, Sheng-Hung Chang & Shang-Nan Huang. (2009) Due-date performance improvement using TOC’s aggregated time buffer method at a wafer fabrication factory. Expert Systems with Applications 36:2, pages 1783-1792.
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W. L. Pearn, S. H. Chung & C. M. Lai. (2007) Due-Date Assignment for Wafer Fabrication Under Demand Variate Environment. IEEE Transactions on Semiconductor Manufacturing 20:2, pages 165-175.
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P. Backus, M. Janakiram, S. Mowzoon, G.C. Runger & A. Bhargava. (2006) Factory Cycle-Time Prediction With a Data-Mining Approach. IEEE Transactions on Semiconductor Manufacturing 19:2, pages 252-258.
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Michael O. Ball, Chien-Yu Chen & Zhen-Ying Zhao. 2004. Handbook of Quantitative Supply Chain Analysis. Handbook of Quantitative Supply Chain Analysis 447 483 .
I Sabuncuoglu & A Comlekci. (2002) Operation-based flowtime estimation in a dynamic job shop. Omega 30:6, pages 423-442.
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H. Grant, S. Moses & D. Goldsmann. (2002) Using simulation to evaluate buffer adjustment methods in order promising. Using simulation to evaluate buffer adjustment methods in order promising.
A.S. Kiran, T. Cetinkaya & J. Cabrera. (2001) Hierarchical modeling of a shipyard integrated with an external scheduling application. Hierarchical modeling of a shipyard integrated with an external scheduling application.
A.S. Kiran & T. Cetinkaya. (1998) Hierarchical modeling: a simulation based application. Hierarchical modeling: a simulation based application.
Shu-Hsing Chung, Ming-Hsien Yang & Cho-Ming Cheng. (1997) The design of due date assignment model and the determination of flow time control parameters for the wafer fabrication factories. IEEE Transactions on Components, Packaging, and Manufacturing Technology: Part C 20:4, pages 278-287.
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