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An approach to securely identifying beneficial collaboration in decentralized logistics systems

  • Chris Clifton
  • , Ananth Iyer
  • , Richard Cho
  • , Wei Jiang
  • , Murat Kantarcioglu
  • , Jaideep Vaidya
  • Purdue University
  • University of New Brunswick
  • University of Texas at Dallas
  • Rutgers - The State University of New Jersey, Newark

Research output: Contribution to journalArticlepeer-review

28 Scopus citations

Abstract

The problem of sharing manufacturing, inventory, or capacity to improve performance is applicable in many decentralized operational contexts. However, the solution of such problems commonly requires an intermediary or a broker to manage information security concerns of individual participants. Our goal is to examine use of cryptographic techniques to attain the same result without the use of a broker. To illustrate this approach, we focus on a problem faced by independent trucking companies that have separate pick-up and delivery tasks and wish to identify potential efficiency-enhancing task swaps while limiting the information they must reveal to identify these swaps. We present an algorithm that finds opportunities to swap loads without revealing any information except the loads swapped, along with proofs of the security of the protocol. We also show that it is incentive compatible for each company to correctly follow the protocol as well as provide their true data. We apply this algorithm to an empirical data set from a large transportation company and present results that suggest significant opportunities to improve efficiency through Pareto improving swaps. This paper thus uses cryptographic arguments in an operations management problem context to show how an algorithm can be proven incentive compatible as well as demonstrate the potential value of its use on an empirical data set.

Original languageEnglish
Pages (from-to)108-125
Number of pages18
JournalManufacturing and Service Operations Management
Volume10
Issue number1
DOIs
StatePublished - Dec 2008

Keywords

  • Algorithm
  • Collaboration
  • Cryptography
  • Incentive compatible
  • Routing
  • Space-filling curve

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