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Fast Deployable Autonomous Systems for Order Picking - How Small and Medium Size Enterprises Can Benefit from the Automation of the Picking Process.

, , and . ICINCO (2), page 479-484. SciTePress, (2016)

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Evaluation of Human-Robot Order Picking Systems Considering the Evolution of Object Detection., , , , , and . IEEM, page 1-8. IEEE, (2021)Evaluation of Grasps in an automatic Intermodal Container Unloading System., , , , and . KES, volume 192 of Procedia Computer Science, page 2210-2219. Elsevier, (2021)Vorhabensbeschreibung zur Förderinitiative "Intelligente Logistik im Güter- und Wirtschaftsverkehr" - Innovationsoffensive für die Märkte von morgen, and . Bremer Institut für Betriebstechnik und angewandte Arbeitswissenschaft an der Universität Bremen (BIBA), (2007)Concept for a Revolution of Public Transport., , and . SYSINT, volume 546 of Lecture Notes in Networks and Systems, page 489-494. Springer, (2022)Planning of Available Resources Considering Ergonomics Under Deterministic Highly Variable Demand., , , , , and . IEEM, page 96-102. IEEE, (2020)Automation? Yes ... But Where to Begin?, , , , , , and . IEEM, page 435-441. IEEE, (2021)Fast Deployable Autonomous Systems for Order Picking - How Small and Medium Size Enterprises Can Benefit from the Automation of the Picking Process., , and . ICINCO (2), page 479-484. SciTePress, (2016)The STIC analysis: A decision support tool for technology related investments in logistics., , and . SOLI, page 33-38. IEEE, (2017)Autonomous unloading of heavy deformable goods: Market opportunities., , , , , and . SOLI, page 54-59. IEEE, (2015)The Quality Interaction Function Deployment for lean Human-Robot Interaction., , and . MMAR, page 145-151. IEEE, (2019)