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威尼斯赌博游戏_威尼斯赌博app-【官网】

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Lehrstuhl

Hier finden Sie Informationen zu unseren Mitarbeitern und aktuelle Stellenausschreibungen für Wiss. MitarbeiterInnen, studentische/wissenschaftliche Hilfskr?fte sowie Tutoren und einen ?berblick über bisherige Publikationen des Lehrstuhls.

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Publikationen des Lehrstuhls für Produktionsinformatik

2025 | 2024 | 2023 | 2022 | 2021 | 2020 | 2019 | 2018 | 2017 | 2016 | 2015 | 2014 | 2013 | 2012 | 2011 | 2010 | 2008 | 2007 | 2006 | 2004 | 2003 | 2002

2025

Mario Luber, Sarah Wagner, Marc Wegmann and Johannes Schilp. 2025. Concept of a plug-and-play, machine learning digital twin of the production resource for detailed capacity planning and scheduling. DOI: 10.1016/j.procs.2025.01.188
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Patrick Zimbrod. 2025. Efficient simulation of multiphysics problems with application to metal-additive manufacturing.
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2024

Raoul Zebisch and Johannes Schilp. 2024. A template for digital human representation in digital twin simulations of social human-robot interaction. DOI: 10.1109/iceccme62383.2024.10796060
BibTeX | RIS | DOI

Patrick Zimbrod, Michael Fleck and Johannes Schilp. 2024. An application-driven method for assembling numerical schemes for the solution of complex multiphysics problems. DOI: 10.3390/asi7030035
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Tom Roeger, Ludwig Vogt, Tobias Friedrich and Johannes Schilp. 2024. Analysis of the relationship between training data volume and model quality for surrogate models in physical simulations. DOI: 10.1016/j.procir.2024.08.302
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Andreas Leinenbach, Marcel Wagner, Fabio Oettl and Johannes Schilp. 2024. Anwendung des Process Data Twin. DOI: 10.37544/1436-4980-2024-03-12
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Robin Huwa, Marcus Albrecht, Andreas Leinenbach and Johannes Schilp. 2024. Flexibility dimensions in cyber-physical production systems. DOI: 10.1109/iceccme62383.2024.10796674
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Max Horn, Matthias Schmitt, Lukas Langer, Georg Schlick and Christian Seidel. 2024. Laser powder bed fusion recoater selection guide: comparison of resulting powder bed properties and part quality. DOI: 10.1016/j.powtec.2023.119356
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Florian Pleier and Johannes Schilp. 2024. Predictive-reactive scheduling to increase robustness of production systems. DOI: 10.1109/iceccme62383.2024.10796054
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Andreas Leinenbach, Marcel Wagner, Fabio Oettl and Johannes Schilp. 2024. The process data twin for digitized production. DOI: 10.15488/17753
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2023

Oliver Kunze, Johannes Schilp, Fabian Frommer, Fabio Oettl and Galiya Klinkova. 2023. 3D-Druck für Führungskr?fte: Technik, Prozesse, Wirtschaftlichkeit und Umweltvertr?glichkeit der additiven Fertigung. DOI: 10.3139/9783446477285
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Ludwig Vogt, Robert Ludwig and Johannes Schilp. 2023. Automatic end tool alignment through plane detection with a RANSAC-algorithm for robotic grasping. DOI: 10.1016/j.procir.2023.06.044
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Fabio Oettl, Leonard Eckart and Johannes Schilp. 2023. Cost estimation approach of a digital twin implementation in industry. DOI: 10.1016/j.procir.2023.06.055
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Tobias Wittmeir, Fabio Oettl and Johannes Schilp. 2023. Digitaler Zwilling für die additive Fertigung. DOI: 10.37544/1436-4980-2023-03-53
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Fabio Oettl, Tobias Tischer, Tobias Wittmeir and Johannes Schilp. 2023. From data to decisions: a method for evaluating the strategic value of digital twins. DOI: 10.1109/iceccme57830.2023.10252781
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Fabio Oettl, Sebastian H?rbrand, Tobias Wittmeir and Johannes Schilp. 2023. Method for evaluating the monetary added value of the usage of a digital twin for additive manufacturing. DOI: 10.1016/j.procir.2023.06.123
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Fabio Oettl, Sebastian Dietl, Sebastian G?ltl, Daniel Müssig and Johannes Schilp. 2023. Method for identifying and evaluating the fields of application of a digital twin. DOI: 10.15488/13448
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2022

Fabio Oettl, Jan Schoeler and Johannes Schilp. 2022. Development of a method for evaluating the benefits of using a digital twin. DOI: 10.1109/iceccme55909.2022.9988218
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Lukas Langer, Matthias Schmitt, Georg Schlick and Johannes Schilp. 2022. Development of an automated process chain for hybrid additive manufacturing using laser powder bed fusion. DOI: 10.1016/j.procir.2022.09.009
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Patrick Zimbrod, Magdalena Schreter and Johannes Schilp. 2022. Efficient simulation of complex capillary effects in advanced manufacturing processes using the finite volume method. DOI: 10.1109/ICECCME55909.2022.9988504
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Julia Foerster, Krunoslav Vranjes, Maximilian Binder, Georg Schlick, Christian Seidel and Johannes Schilp. 2022. Electrophotographic powder application for metal powder bed based additive manufacturing. DOI: 10.1016/j.procir.2022.09.142
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Julia Foerster, Marco Michatz, Maximilian Binder, Alexander Frey, Christian Seidel, Georg Schlick and Johannes Schilp. 2022. Electrostatic powder attraction for the development of a novel recoating system for metal powder bed-based additive manufacturing. DOI: 10.1016/j.elstat.2021.103641
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Christian H?rdtlein, Florian Karg, Julia Berger and Johannes Schilp. 2022. Energieorientierte Leitsteuerung mobiler Roboter / Energy-oriented control system for mobile robots. DOI: 10.37544/1436-4980-2022-03-59
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Ludwig Vogt and Johannes Schilp. 2022. Finite element based compression and volumetric load analysis for grasped objects. DOI: 10.1109/iceccme55909.2022.9987947
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Michael Fleck, Felix Schleifer and Patrick Zimbrod. 2022. Frictionless motion of diffuse interfaces by sharp phase-field modeling. DOI: 10.3390/cryst12101496
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Michaela Kr?, Leonard Eckart, Marinella Rito and Johannes Schilp. 2022. Levels of autonomy in production logistics: terminology and framework. DOI: 10.15488/12140