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OR PRACTICE---Production Planning with Patterns: A Problem from Processed Food Manufacturing

Author

Listed:
  • Mili Mehrotra

    (Carlson School of Management, University of Minnesota, Minneapolis, Minnesota 55455)

  • Milind Dawande

    (School of Management, University of Texas at Dallas, Richardson, Texas 75080)

  • Srinagesh Gavirneni

    (Johnson Graduate School of Management, Cornell University, Ithaca, New York 14853)

  • Mehmet Demirci

    (SmartOps Corporation, Pittsburgh, Pennsylvania 15212)

  • Sridhar Tayur

    (Tepper School of Business, Carnegie Mellon University, and SmartOps Corporation, Pittsburgh, Pennsylvania 15212)

Abstract

Based on our work with ConAgra Foods (http://www.conagrafoods.com), a leading U.S. food manufacturer, we study a large-scale production-planning problem. The problem incorporates several distinguishing characteristics of production in the processed-food industry, including (i) production patterns that define specific combinations of weeks in which products can be produced, (ii) food groups that classify products based on the allergens they contain, (iii) sequence-dependent setup times, and (iv) manufacture of a large number of products (typically, around 200--250) on multiple production lines (typically, around 15--20) in the presence of significant inventory holding costs and production setup costs. The objective is to obtain a minimum-cost four-week cyclic schedule to resolve three basic decisions: (a) the assignment of products to each line, (b) the partitioning of the demand of each product over the lines to which it is assigned, and (c) the sequence of production on each line.We show that the general problem is strongly NP-hard. To develop intuition via theoretical analysis, we first obtain a polynomially solvable special case by sacrificing as little of its structure as possible and then analyzing the impact of imposing production patterns. A mixed-integer programming model of the general problem allows us to assess the average impact of production patterns and production capacities on the cost of an optimal schedule. Next, to solve practical instances of the problem, we develop an easy-to-implement heuristic. We first demonstrate the effectiveness of the heuristic on a comprehensive test bed of instances; the average percentage gap of the heuristic solution from the optimum is about 3%. Then, we show savings of about 28% on a real-world instance (283 products, 17 production lines) by comparing the schedule obtained from the heuristic to one that was in use (at ConAgra) based on an earlier consultant's work. Finally, we discuss the IT infrastructure implemented to enable the incorporation of optimized (or near-optimized) solutions for ongoing use.

Suggested Citation

  • Mili Mehrotra & Milind Dawande & Srinagesh Gavirneni & Mehmet Demirci & Sridhar Tayur, 2011. "OR PRACTICE---Production Planning with Patterns: A Problem from Processed Food Manufacturing," Operations Research, INFORMS, vol. 59(2), pages 267-282, April.
  • Handle: RePEc:inm:oropre:v:59:y:2011:i:2:p:267-282
    DOI: 10.1287/opre.1100.0871
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    References listed on IDEAS

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    1. Soman, C.A. & van Donk, D.P. & Gaalman, G.J.C., 2007. "Capacitated planning and scheduling for combined make-to-order and make-to-stock production in the food industry: An illustrative case study," International Journal of Production Economics, Elsevier, vol. 108(1-2), pages 191-199, July.
    2. Gregory Dobson, 1992. "The Cyclic Lot Scheduling Problem with Sequence-Dependent Setups," Operations Research, INFORMS, vol. 40(4), pages 736-749, August.
    3. Kumar Rajaram & Uday S. Karmarkar, 2004. "Campaign Planning and Scheduling for Multiproduct Batch Operations with Applications to the Food-Processing Industry," Manufacturing & Service Operations Management, INFORMS, vol. 6(3), pages 253-269, October.
    4. Robin Roundy, 1989. "Rounding Off to Powers of Two in Continuous Relaxations of Capacitated Lot Sizing Problems," Management Science, INFORMS, vol. 35(12), pages 1433-1442, December.
    5. Sungmin Kang & Kavindra Malik & L. Joseph Thomas, 1999. "Lotsizing and Scheduling on Parallel Machines with Sequence-Dependent Setup Costs," Management Science, INFORMS, vol. 45(2), pages 273-289, February.
    6. Kumar Rajaram & Uday S. Karmarkar, 2002. "Product Cycling With Uncertain Yields: Analysis and Application to the Process Industry," Operations Research, INFORMS, vol. 50(4), pages 680-691, August.
    7. Philip Doganis & Haralambos Sarimveis, 2008. "Optimal production scheduling for the dairy industry," Annals of Operations Research, Springer, vol. 159(1), pages 315-331, March.
    8. Tadei, R. & Trubian, M. & Avendano, J. L. & Della Croce, F. & Menga, G., 1995. "Aggregate planning and scheduling in the food industry: A case study," European Journal of Operational Research, Elsevier, vol. 87(3), pages 564-573, December.
    9. Robin Roundy, 1986. "A 98%-Effective Lot-Sizing Rule for a Multi-Product, Multi-Stage Production / Inventory System," Mathematics of Operations Research, INFORMS, vol. 11(4), pages 699-727, November.
    10. Milind Dawande & Jayant Kalagnanam & Ho Soo Lee & Chandra Reddy & Stuart Siegel & Mark Trumbo, 2004. "The Slab-Design Problem in the Steel Industry," Interfaces, INFORMS, vol. 34(3), pages 215-225, June.
    11. Unknown, 2005. "New Directions In Global Food Markets," Agricultural Information Bulletins 33751, United States Department of Agriculture, Economic Research Service.
    12. Monkman, Susan K. & Morrice, Douglas J. & Bard, Jonathan F., 2008. "A production scheduling heuristic for an electronics manufacturer with sequence-dependent setup costs," European Journal of Operational Research, Elsevier, vol. 187(3), pages 1100-1114, June.
    13. Kumar Rajaram & Zhili Tian, 2009. "Buffer location and sizing to optimize cost and quality in semi-continuous manufacturing processes: Methodology and application," IISE Transactions, Taylor & Francis Journals, vol. 41(12), pages 1035-1048.
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    3. Felipe Caro & Kumar Rajaram & Jens Wollenweber, 2012. "Process Location and Product Distribution with Uncertain Yields," Operations Research, INFORMS, vol. 60(5), pages 1050-1063, October.
    4. Dirk Briskorn & Philipp Zeise, 2019. "A cyclic production scheme for the synchronized and integrated two-level lot-sizing and scheduling problem with no-wait restrictions and stochastic demand," OR Spectrum: Quantitative Approaches in Management, Springer;Gesellschaft für Operations Research e.V., vol. 41(4), pages 895-942, December.

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