Technical Report: LoadRunner®, a new platform approach on collaborative logistics services

Authors

  • Michael ten Hompel Chair of Materials Handling and Warehousing (FLW), Faculty of Mechanical Engineering, TU Dortmund University & Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Haci Bayhan Chair of Materials Handling and Warehousing (FLW), Faculty of Mechanical Engineering, TU Dortmund University
  • Jan Behling Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Leonie Benkenstein Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Jan Emmerich Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Guido Follert Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Martin Grzenia Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Christian Hammermeister Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Hendrik Hasse Fraunhofer Institute for Software and Systems Engineering ISST, Dortmund
  • Dirk Hoening Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Christian Hoppe Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Sören Kerner Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Patrick Klokowski Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Benjamin Korth Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Gerd Kuhlmann Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Jens Leveling Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Dennis Lünsch Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Ralf Mendel Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Fabian Menebröker Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Andreas Nettsträter Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Johannes Pieperbeck Fraunhofer Institute for Software and Systems Engineering ISST, Dortmund
  • Christian Prasse Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Sebastian Roeder Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Moritz Roidl Chair of Materials Handling and Warehousing (FLW), Faculty of Mechanical Engineering, TU Dortmund University
  • Mathias Rotgeri Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Dominik Sparer Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Stefan Walter Fraunhofer Institute for Material Flow and Logistics IML, Dortmund
  • Oliver Wolf Fraunhofer Institute for Material Flow and Logistics IML, Dortmund

DOI:

https://doi.org/10.2195/lj_NotRev_tenhompel_en_202010_01

Keywords:

B2B platforms, agv, artificial intelligence, autonomous vehicle platform, data economy, decentral control, international data spaces, platform economy, silicon economy, swarm

Abstract

This article describes a concept for collaborative logistics services on the basis of a new autonomous vehicle platform and a corresponding digital infrastructure for its operation. The basis is an open source infrastructure including the optimization of the vehicle swarm, the order management, the participant management, the billing of the services provided as well as the connection to external services while maintaining the data sovereignty.

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Published

2020-10-05

How to Cite

ten Hompel, M., Bayhan, H., Behling, J., Benkenstein, L., Emmerich, J., Follert, G., … Wolf, O. (2020). Technical Report: LoadRunner®, a new platform approach on collaborative logistics services. Logistics Journal: Editorial-Reviewed. https://doi.org/10.2195/lj_NotRev_tenhompel_en_202010_01