A mixed integer programming model for a two line CONWIP-based production and assembly system [An article from: International Journal of Production Economics] Buy on Amazon

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A mixed integer programming model for a two line CONWIP-based production and assembly system [An article from: International Journal of Production Economics]

PublisherElsevier
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Book Details

PublisherElsevier
ISBN / ASINB000RR2I8I
ISBN-13978B000RR2I82
AvailabilityAvailable for download now
Sales Rank11,663,382
MarketplaceUnited States  🇺🇸

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This digital document is a journal article from International Journal of Production Economics, published by Elsevier in 2005. The article is delivered in HTML format and is available in your Amazon.com Media Library immediately after purchase. You can view it with any web browser.

Description:
In this paper, a nonlinear mixed integer programming model was developed for a CONWIP-based production system where an assembly station is fed by two parallel fabrication lines. Raw materials are processed through the two fabrication lines. The processed parts are assembled to produce final products at the assembly station. The performance of the production system is measured by the total set-up time and the work load balance on the fabrication lines. The developed model is a nonlinear integer programming model consisting of two travelling salesman problem (TSP) sub-models. The nonlinear terms in the model was partially linearized and solved by enumerating a series of solutions of the TSP sub-problems. Optimal part assignment, production sequence and lot sizes are simultaneously determined by solving the problem. Optimal solutions of small size problems were obtained and are presented to illustrate the developed model.
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