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Modeling and analysis of an auction-based logistics market

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  • AgralI, Semra
  • Tan, BarIs
  • Karaesmen, Fikri

Abstract

We consider a logistics spot market where the transportation orders from a number of firms are matched with two types of carriers through a reverse auction. In the spot market, local carriers compete with in-transit carriers that have lower costs. In order to analyze the effects of implementing a logistics spot market on these three parties: firms, local carriers, and in-transit carriers and also the effects of various system parameters, we develop a two-stage stochastic model. We first model the auction in a static setting and determine the expected auction price based on the number of carriers engaging in the auction and their cost distributions. We then develop a continuous-time Markov chain model to evaluate the performance of the system in a dynamic setting with random arrivals and possible abandonment of orders and carriers. By combining these two models, we evaluate the performance measures such as the expected auction price, price paid to the carriers, distribution of orders between local and in-transit carriers, and expected number of carriers and orders waiting at the logistics center in the long run. We present analytical and computational results related to the performance of the system and discuss operation of such a logistics spot market in Turkey.

Suggested Citation

  • AgralI, Semra & Tan, BarIs & Karaesmen, Fikri, 2008. "Modeling and analysis of an auction-based logistics market," European Journal of Operational Research, Elsevier, vol. 191(1), pages 272-294, November.
  • Handle: RePEc:eee:ejores:v:191:y:2008:i:1:p:272-294
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    1. McKelvey, Bill & Wycisk, Christine & Hülsmann, Michael, 2009. "Designing an electronic auction market for complex 'smart parts' logistics: Options based on LeBaron's computational stock market," International Journal of Production Economics, Elsevier, vol. 120(2), pages 476-494, August.
    2. repec:pcz:journl:v:5:y:2011:i:1:p:47-56 is not listed on IDEAS
    3. Karaenke, Paul & Bichler, Martin & Merting, Soeren & Minner, Stefan, 2020. "Non-monetary coordination mechanisms for time slot allocation in warehouse delivery," European Journal of Operational Research, Elsevier, vol. 286(3), pages 897-907.
    4. Liang, Renchao & Wang, Junwei & Huang, Min & Jiang, Zhong-Zhong, 2020. "Truthful auctions for e-market logistics services procurement with quantity discounts," Transportation Research Part B: Methodological, Elsevier, vol. 133(C), pages 165-180.
    5. Yiting Xing & Ling Li & Zhuming Bi & Marzena Wilamowska‐Korsak & Li Zhang, 2013. "Operations Research (OR) in Service Industries: A Comprehensive Review," Systems Research and Behavioral Science, Wiley Blackwell, vol. 30(3), pages 300-353, May.
    6. Róbert Skapinyecz & Béla Illés, 2011. "The Aspects Of Economic And Enviromental Optimization In An E-Marketplace Integrated Virtual Transport Enterprise," Advanced Logistic systems, University of Miskolc, Department of Material Handling and Logistics, vol. 5(1), pages 47-56, December.
    7. Xu, Su Xiu & Cheng, Meng & Huang, George Q., 2015. "Efficient intermodal transportation auctions for B2B e-commerce logistics with transaction costs," Transportation Research Part B: Methodological, Elsevier, vol. 80(C), pages 322-337.
    8. Huang, George Q. & Xu, Su Xiu, 2013. "Truthful multi-unit transportation procurement auctions for logistics e-marketplaces," Transportation Research Part B: Methodological, Elsevier, vol. 47(C), pages 127-148.
    9. Fibich, Gadi & Gavious, Arieh, 2010. "Asymptotic revenue equivalence of asymmetric auctions with interdependent values," European Journal of Operational Research, Elsevier, vol. 206(2), pages 496-507, October.
    10. Izdebski, Mariusz & Jacyna-Gołda, Ilona & Gołda, Paweł, 2022. "Minimisation of the probability of serious road accidents in the transport of dangerous goods," Reliability Engineering and System Safety, Elsevier, vol. 217(C).
    11. Xu, Su Xiu & Huang, George Q., 2013. "Transportation service procurement in periodic sealed double auctions with stochastic demand and supply," Transportation Research Part B: Methodological, Elsevier, vol. 56(C), pages 136-160.
    12. Yilmaz, Ozhan & Savasaneril, Secil, 2012. "Collaboration among small shippers in a transportation market," European Journal of Operational Research, Elsevier, vol. 218(2), pages 408-415.
    13. Yu, Hao & Huang, Min & Chao, Xiuli & Yue, Xiaohang, 2022. "Truthful multi-attribute multi-unit double auctions for B2B e-commerce logistics service transactions," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 164(C).
    14. Xu, Su Xiu & Huang, George Q., 2014. "Efficient auctions for distributed transportation procurement," Transportation Research Part B: Methodological, Elsevier, vol. 65(C), pages 47-64.
    15. Su Xiu Xu & George Q. Huang & Meng Cheng, 2017. "Truthful, Budget-Balanced Bundle Double Auctions for Carrier Collaboration," Transportation Science, INFORMS, vol. 51(4), pages 1365-1386, November.
    16. Lafkihi, Mariam & Pan, Shenle & Ballot, Eric, 2019. "Freight transportation service procurement: A literature review and future research opportunities in omnichannel E-commerce," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 125(C), pages 348-365.
    17. Briand, Martin & Franklin, Rod & Lafkihi, Mariam, 2022. "A dynamic routing protocol with payments for the Physical Internet: A simulation with learning agents," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 166(C).

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