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Reducing Truckload Transportation Costs Through Collaboration

Author

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  • Ozlem Ergun

    (School of Industrial and Systems Engineering and The Logistics Institute, Georgia Institute of Technology, 765 Ferst Street, Atlanta, Georgia 30332-0205)

  • Gultekin Kuyzu

    (School of Industrial and Systems Engineering and The Logistics Institute, Georgia Institute of Technology, 765 Ferst Street, Atlanta, Georgia 30332-0205)

  • Martin Savelsbergh

    (School of Industrial and Systems Engineering and The Logistics Institute, Georgia Institute of Technology, 765 Ferst Street, Atlanta, Georgia 30332-0205)

Abstract

In the highly fragmented truckload transportation industry a substantial fraction of truck movements involves empty trucks, i.e., moves that reposition trucks. However, reducing the amount of truck repositioning is difficult because the need for a carrier to reposition its trucks depends on the interactions between the shippers the carrier is serving. Through collaboration, shippers may be able to identify and submit sequences of continuous loaded movements to carriers, reducing the carriers’ need for repositioning, and thus lowering the carriers’ costs. A portion of the carriers’ cost savings may be returned to the shippers in the form of lower prices. We discuss optimization technology that can be used to assist in the identification of repeatable, dedicated truckload continuous move tours with little truck repositioning. Timing considerations are critical to practical viability and a key focus of our efforts. We demonstrate the effectiveness of the algorithms developed on various randomly generated instances as well as on instances derived from data obtained from a strategic sourcing consortium for a $14 billion U.S. industry.

Suggested Citation

  • Ozlem Ergun & Gultekin Kuyzu & Martin Savelsbergh, 2007. "Reducing Truckload Transportation Costs Through Collaboration," Transportation Science, INFORMS, vol. 41(2), pages 206-221, May.
  • Handle: RePEc:inm:ortrsc:v:41:y:2007:i:2:p:206-221
    DOI: 10.1287/trsc.1060.0169
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    References listed on IDEAS

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    1. Dorit S. Hochbaum & Eli V. Olinick, 2001. "The Bounded Cycle-Cover Problem," INFORMS Journal on Computing, INFORMS, vol. 13(2), pages 104-119, May.
    2. E. William Moore & Janice M. Warmke & Lonny R. Gorban, 1991. "The Indispensable Role of Management Science in Centralizing Freight Operations at Reynolds Metals Company," Interfaces, INFORMS, vol. 21(1), pages 107-129, February.
    3. Warren B. Powell & Arun Marar & Jack Gelfand & Steve Bowers, 2002. "Implementing Real-Time Optimization Models: A Case Application From The Motor Carrier Industry," Operations Research, INFORMS, vol. 50(4), pages 571-581, August.
    4. Warren B. Powell & Yosef Sheffi & Kenneth S. Nickerson & Kevin Butterbaugh & Susan Atherton, 1988. "Maximizing Profits for North American Van Lines' Truckload Division: A New Framework for Pricing and Operations," Interfaces, INFORMS, vol. 18(1), pages 21-41, February.
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