Publications

Marcel Baader, Roman Hahn, Jörg Franke, Achim Kampker, Henrik Born, Sebastian Hartmann, David Drexler, Nejila Parspour, Adrian Schäfer, and Urs Pecha. The Production Process Chain of Axial Flux Motors: A Comparative Study. 2024 1st International Conference on Production Technologies and Systems for E-Mobility (EPTS), 1--8, 2024. [PUMA: Automation Magnetic_cores Manufacturing_processes Power_system_measurements Stator_cores Stator_windings Windings axial_flux_motor electric_motor electric_motor_production hp_iew manufacturing process_chain]

Christian Block, Serkan Dikmen, and Reinhard Reichel. Automated Generation of Test Artifacts and Traceability for a Safety-Critical, Distributed Avionics Platform. 2023 IEEE AUTOTESTCON, 1-10, IEEE, August 2023. [PUMA: automation avionics_systems ils myown test_generation]

Ivan Ðula, Tabea Berberena, Ksenia Keplinger, and Maria Wirzberger. Hooked on artificial agents: a systems thinking perspective. Frontiers in Behavioral Economics, (2):1223281, 2023. [PUMA: AI algorithm automation bias iris llis myown organization reflection simtech systems]

Björn Selent, Hamzeh Kraus, Niels Hansen, Björn Schembera, Anett Seeland, and Dorothea Iglezakis. Management of Research Data in Computational Fluid Dynamics and Thermodynamics. In Vincent Heuveline, Fabian Gebhart, and Nina Mohammadianbisheh (Eds.), E-Science-Tage 2019: Data to Knowledge, 128-139, HeiBOOKS, Heidelberg, 2020. [PUMA: automation darus forschungsdaten myown tik]

Christian Block, Serkan Dikmen, and Reinhard Reichel. Automated Test Case Generation for the Verification of System and High-Level Software Requirements for Fly-by-Wire Platforms. AIAA SCITECH 2022 Forum, American Institute of Aeronautics and Astronautics, January 2022. [PUMA: ILS automation avionics_systems myown test_generation] URL

Larissa Born, Claudia Möhl, Fabian Kannenberg, Samantha Melnyk, Florian Alexander Jonas, Achim Menges, jan Knippers, and Götz T. Gresser. Semi-automated braiding of complex, spatially branched FRP-structures. Composite Structures, (276):114551, ELSEVIER SCI LTD, Nov 15, 2021. [PUMA: 2021 FRP-structures ITKE Semi-automated architecture automation biomimetics born braiding branched branching fibre.reinforced frp gresser jonas kannenberg knippers melnyk menges möhl node palstic preform spatially]

Larissa Born, Claudia Möhl, Fabian Kannenberg, Samantha Melnyk, Florian Alexander Jonas, Achim Menges, jan Knippers, and Götz T. Gresser. Semi-automated braiding of complex, spatially branched FRP-structures. Composite Structures, (276):114551, ELSEVIER SCI LTD, Nov 15, 2021. [PUMA: frp ITKE born preform knippers melnyk 2021 branching node palstic jonas spatially from:petraheim branched menges braiding fibre.reinforced Semi-automated gresser biomimetics automation kannenberg FRP-structures möhl architecture]

Larissa Born, Claudia Möhl, Fabian Kannenberg, Samantha Melnyk, Florian Alexander Jonas, Achim Menges, Jan Knippers, and Götz T. Gresser. Semi-automated braiding of complex, spatially branched FRP-structures. Composite Structures, (276):114551, 2021. [PUMA: automation braiding branching fiber-reinforced frp myown node peer plastic preform] URL

Hans Jakob Wagner, Martin Alvarez, Abel Groenewolt, and Achim Menges. Towards digital automation flexibility in large-scale timber construction: integrative robotic prefabrication and co-design of the BUGA Wood Pavilion. Construction Robotics, 2020. [PUMA: ap2 automation bd1 computational construction design from:hansjakobwagner management peer platforms project-based robotic rp4 timber]

Hans Jakob Wagner, Martin Alvarez, Abel Groenewolt, and Achim Menges. Towards digital automation flexibility in large-scale timber construction: integrative robotic prefabrication and co-design of the BUGA Wood Pavilion. Construction Robotics, 2020. [PUMA: TIM automation computational construction design management myown platforms project-based robotic timber]

Caren Dripke, Sara Höhr, Akos Csiszar, and Alexander Verl. A Concept for the Application of Reinforcement Learning in the Optimization of CAM-Generated Tool Paths. In Jürgen Beyerer, Oliver Niggemann, and Christian Kühnert (Eds.), Machine Learning for Cyber Physical Systems, 1--8, Springer Berlin Heidelberg, Berlin, Heidelberg, 2017. [PUMA: automation cnc learning machine]

Rebekka Wohlrab, Thijmen de Gooijer, Anne Koziolek, and Steffen Becker. Experience of Pragmatically Combining RE Methods for Performance Requirements in Industry. Proceedings of the 22nd IEEE International Requirements Engineering Conference (RE), 344--353, August 2014. [PUMA: architecture;PROPRE;RE automation context development;system domain;software elicitation;performance engineering engineering;performance expectations;functional factors formal methods;architecture methods;performance models;Context;Documentation;Measurement;Testing;Throughput;Time models;end-user performance requirements setting;nonfunctional specification;Adaptation specification;program specifications;industrial testing;process testing;software]

Christoph Legat, Frank Steden, Stefan Feldmann, Michael Weyrich, and Birgit Vogel-Heuser. Co-Evolution and Reuse of Automation Control and Simulation Software: Identification and Definition of Modification Actions and Strategies. IECON 2014 - 40th Annual Conference of the IEEE Industrial Electronics Society 29.10.-01.11.2014 Dallas, USA, IEEE, 2014. [PUMA: Automation] URL

Stefan Scheifele, and Alexander Verl. Automated Control System Generation Out of the Virtual Machine. Procedia Technology, (26):349 - 356, 2016. [PUMA: automation hardware-in-the-loop software-in-the-loop] URL

G. Pritschow, K. Haug, H. Horber, and S. Müller. Intelligent FPGA-based Low-cost Signal Pre-Processing Unit for 2D- and 3D-Laser Triangulation Sensors.Opto 2000, Erfurt, 09.-11.05.2000. Intelligent FPGA-based Low-cost Signal Pre-Processing Unit for 2D- and 3D-Laser Triangulation Sensors.Opto 2000, Erfurt, 09.-11.05.2000.. --, 2000. [PUMA: FPGA, ISW automation image processing, signal welding]