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Scheduling efficiencies of Farm-to-plant milk collection in Western Ohio

Author

Listed:
  • Russell T. Coltman

    (Department of Agricultural Economics and Rural Sociology, The Ohio State University)

  • Gary D. Schnitkey

    (Department of Agricultural Economics and Rural Sociology, The Ohio State University)

  • Mario J. Miranda

    (Department of Agricultural Economics and Rural Sociology, The Ohio State University)

Abstract

We examined the efficiency of farm-to-plant milk collection in western Ohio. Results suggest that mileage reductions of 10% are possible by reordering farm stops while collecting loads of milk. A further 3% reduction is possible by moving dairy farms between loads. When examining efficiencies, guaranteed lowest mileage (GLM) and heuristic algorithms were used to generate schedules. Heuristic algorithms account for about 80% of the mileage reductions identified by GLM algorithms. GLM algorithms are computationally feasible for ordering farm stops while collecting milk loads. However, heuristic algorithms must be relied on for moving dairy farms between loads.

Suggested Citation

  • Russell T. Coltman & Gary D. Schnitkey & Mario J. Miranda, 1994. "Scheduling efficiencies of Farm-to-plant milk collection in Western Ohio," Agribusiness, John Wiley & Sons, Ltd., vol. 10(2), pages 179-191.
  • Handle: RePEc:wly:agribz:v:10:y:1994:i:2:p:179-191
    DOI: 10.1002/1520-6297(199403/04)10:2<179::AID-AGR2720100207>3.0.CO;2-L
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    References listed on IDEAS

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    1. Dimitris J. Bertsimas & Garrett van Ryzin, 1991. "A Stochastic and Dynamic Vehicle Routing Problem in the Euclidean Plane," Operations Research, INFORMS, vol. 39(4), pages 601-615, August.
    2. Bertsimas, Dimitris & Van Ryzin, Garrett., 1991. "A stochastic and dynamic vehicle routing problem in the Euclidean plane," Working papers 3286-91., Massachusetts Institute of Technology (MIT), Sloan School of Management.
    3. Sehulster, Jean M. & Pratt, James E., 1983. "Potential Savings in Farm Milk Pickup Costs from Eliminating Route Duplication and Using Improved Scheduling Techniques," Research Bulletins 184123, Cornell University, Department of Applied Economics and Management.
    4. Bocxe, M. A. G. & Tilanus, C. B., 1985. "Testing vehicle scheduling programs for milk collection," European Journal of Operational Research, Elsevier, vol. 20(1), pages 25-33, April.
    5. Beierlein, James G. & Kirkland, Jack J. & Cummins, Melissa J., 1988. "A Systems Approach to Minimizing the Total Cost of Moving Milk from Farmers to Consumers in Pennsylvania," Journal of the Transportation Research Forum, Transportation Research Forum, vol. 29(1).
    6. G. Dantzig & R. Fulkerson & S. Johnson, 1954. "Solution of a Large-Scale Traveling-Salesman Problem," Operations Research, INFORMS, vol. 2(4), pages 393-410, November.
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