Publications

Moritz Walker, Marc Fischer, Michael Neubauer, Armin Lechler, und Alexander Verl. Towards a Domain Specific Language for the Development of Distributed Real-Time Systems. In Thomas Bauernhansl, Alexander Verl, Mathias Liewald, und Hans-Christian Möhring (Hrsg.), Production at the Leading Edge of Technology, 268--279, Springer Nature Switzerland, Cham, 2024. [PUMA: container dsl isw real-time] URL

Stefan Oechsle, Florian Frick, Armin Lechler, und Alexander Verl. A modular configuration and management framework for distributed real-time applications based on converged networks using TSN. Procedia CIRP, (118):38--43, Elsevier BV, 2023. [PUMA: Engineering Real-Time TSN isw] URL

Stefan Oechsle, Moritz Walker, Marc Fischer, Florian Frick, Armin Lechler, und Alexander Verl. Real-Time Capable Architecture for Software-Defined Manufacturing. In Arena 2036 (Hrsg.), (Advances in Automotive Production Technology – Towards Software-Defined Manufacturing and Resilient Supply Chains):3-13, Springer, Juni 2023. [PUMA: isw real-time sdm] URL

Johannes Knittel, Steffen Koch, Tan Tang, Wei Chen, Yingcai Wu, Shixia Liu, und Thomas Ertl. Real-Time Visual Analysis of High-Volume Social Media Posts. IEEE Transactions on Visualization & Computer Graphics, (28)01:879-889, IEEE Computer Society, Los Alamitos, CA, USA, Januar 2022. [PUMA: analytics real-time streaming twitter vis-gis visualization visus:ertl visus:knittejs visus:kochsn]

Seiichi Suzuki, und Jan Knippers. A Generic Particle Model with Topologic Modeling Capabilities for the Computational Form-Finding of Elastic Structures. Computer-Aided Design, (145)ELSEVIER SCI LTD, April 2022. [PUMA: 2022 Elastic Exploratory Real-time Topologic computational engineering form-finding generic itke knippers model modeling particle physics structures suzuki]

Seiichi Suzuki, und Jan Knippers. A Generic Particle Model with Topologic Modeling Capabilities for the Computational Form-Finding of Elastic Structures. Computer-Aided Design, (145)ELSEVIER SCI LTD, April 2022. [PUMA: Real-time modeling Topologic knippers 2022 engineering generic Elastic itke from:petraheim physics structures particle Exploratory model computational form-finding suzuki]

Alexander Schmidt, Florian Schellroth, Marc Fischer, Lukas Allimant, und Oliver Riedel. Reinforcement learning methods based on GPU accelerated industrial control hardware. Neural Computing and Applications, 2021. [PUMA: GPU Industrial Manufacturing PLC Real-time Reinforcement control isw learning myown] URL

W. Johannes, S. Stanko, A. Wahlen, R. Sommer, N. Pohl, P. Wellig, E.H. Meier, und I. Kallfass. Implementation of a 35 \GHz\ \SAR\ sensor and a high resolution camera to enable real-time observation. 10th European Conference on Synthetic Aperture Radar (EUSAR 2014), Berlin, Germany, Juni 2014. [PUMA: Ground SAR SAR; UAV; airborne based camera; mmWave; monitoring; multi real-time sensor;]

Christian von Arnim, Armin Lechler, Oliver Riedel, und Alexander Verl. Fragmentation in Reconfigured Real-time Production Networks. Annals of Scientific Society for Assembly, Handling and Industrial Robotics, 105--115, Springer, 2020. [PUMA: isw isw-2020 myown real-time reconfiguration] URL

Jonathan Falk, David Hellmanns, Ben Carabelli, Naresh Nayak, Frank Dürr, Stephan Kehrer, und Kurt Rothermel. NeSTiNg: Simulating IEEE Time-sensitive Networking (TSN) in OMNeT++. 2019 International Conference on Networked Systems (NetSys), 1-8, März 2019. [PUMA: Ethernet OMNeT++ TSN myown network networking real-time simulation time-sensitive] URL

Michael Becher, Michael Krone, Guido Reina, und Thomas Ertl. Feature-based volumetric terrain generation and decoration. IEEE Transactions on Visualization and Computer Graphics, (25)2:1283--1296, 2019. [PUMA: (computer (mathematics), Computational GPU, Ptex, Rendering Splines Terrain, Three-dimensional Tools, algorithms, common complete computer curve-based curves, data data, diffusion, diffusion-based displays, extraction, feature feature-based features, field, fields, generation, graphics), graphics, height input interactive large-scale layers, manual mapping, modeling, modelling modelling, multiple offline primitives, prominent real-time rendering rendering, representation representations, scale sparse spline structure, structures, surface surface, terrain texture, three-dimensional toolset, two-dimensional vertical visualisation, volumetric workflow,]

S. Hoher, P. Schindler, S. G?ttlich, V. Schleper, und S. Röck. System Dynamic Models and Real-time Simulation of Complex Material Flow Systems. In Hoda A. ElMaraghy (Hrsg.), Enabling Manufacturing Competitiveness and Economic Sustainability, 316-321, Springer Berlin Heidelberg, 2012. [PUMA: Material Real-time System dynamic flow from:mhartmann ians models simulation; system; vorlaeufig] URL

Tobias Köppl, Gabriele Santin, Bernard Haasdonk, und Rainer Helmig. Numerical modelling of a peripheral arterial stenosis using dimensionally reduced models and kernel methods. International Journal for Numerical Methods in Biomedical Engineering, (0)ja:e3095, 2018. [PUMA: blood dimensionally flow from:mhartmann ians kernel methods, mixed-dimension models, peripheral real-time reduced simulations simulations, stenosis, surrogate vorlaeufig] URL

S. Hoher, P. Schindler, S. G?ttlich, V. Schleper, und S. Röck. System Dynamic Models and Real-time Simulation of Complex Material Flow Systems. In Hoda A. ElMaraghy (Hrsg.), Enabling Manufacturing Competitiveness and Economic Sustainability, 316-321, Springer Berlin Heidelberg, 2012. [PUMA: Material Real-time System dynamic flow models simulation; system; vorlaeufig] URL

Tobias Köppl, Gabriele Santin, Bernard Haasdonk, und Rainer Helmig. Numerical modelling of a peripheral arterial stenosis using dimensionally reduced models and kernel methods. International Journal for Numerical Methods in Biomedical Engineering, (0)ja:e3095, 2018. [PUMA: blood dimensionally flow kernel methods, mixed-dimension models, peripheral real-time reduced simulations simulations, stenosis, surrogate vorlaeufig] URL

Valentin Schmidt, und Andreas Pott. Increase of position accuracy for cable-driven parallel robots using a model for elongation of plastic fiber ropes. Mechanisms and Machine Science, (43):335--343, 2017. [PUMA: Accuracy; Cable-driven Elongation; Import180214; Real-time computation; modeling; myown; parallel robots;]

K. Oberle, M. Kessler, M. Stein, T. Voith, D. Lamp, und S. Berger. Network virtualization: The missing piece. Intelligence in Next Generation Networks, 2009. ICIN 2009. 13th International Conference on, 1-6, 2009. [PUMA: Cloud_computing Content Content_management Context-aware Context-aware_services Infrastructure Network Network_Virtualization Oriented Platform Platform_virtualization Quality Quality_of_service Real-time Real-time_service_support Resource Resource_management Resource_virtualization Service Service_oriented_architecture Virtualization architecture computing connectivity electronic electronic_messaging exchange integrated integrated_networking interactive interactive_real-time_services layer management message message_exchange messaging network network_connectivity network_virtualization networking quality quality_of_service real-time real-time_systems requirements service service_requirements services support systems telecommunication telecommunication_network_management transport transport_layer virtualization virtualized virtualized_service_platform]

S. Röck, und G.: Pritschow. Real-Time capable Finite Element Models with Closed-Loop Control - a Method for Hardware-in-the-Loop Simulation of flexible Systems.WGP-Annals XIV/1, Production Engineering Research & Development, S.37-S.43. Real-Time capable Finite Element Models with Closed-Loop Control - a Method for Hardware-in-the-Loop Simulation of flexible Systems.WGP-Annals XIV/1, Production Engineering Research & Development, S.37-S.43.. --, 2007. [PUMA: FEM. ISW Machine Real-Time Simulation, Tool,]

Andreas Selig. Informationsmodell zur funktionalen Typisierung von Automatisierungsgeräten: Informationsmodell zur funktionalen Typisierung von Automatisierungsgeräten. --, 2011. [PUMA: Echtzeitsystemsteuerung; Ethernet; ISW Informationsmodell; Plug Produce; Schnittstelle XML; and information modelling; real-time system;]

P.: Sekler. Real-Time Computation of the System Behaviour of Lightweight Machines: Real-Time Computation of the System Behaviour of Lightweight Machines. --, 2009. [PUMA: Control Device ISW Lightweight Machine, Model, Real-Time Reduction, Simulation Vibration]

Röck S. Verl A. Hoher, S.. A System Dynamic Model of a Complex Material Flow System for VirtualCommissioning: A System Dynamic Model of a Complex Material Flow System for VirtualCommissioning. --, 2011. [PUMA: ISW Material Physically Real-time based flow modelling, simulation,]

P. Sekler, und A. Verl. Real-Time Computation of the System Behaviour of Lightweight Machines: Real-Time Computation of the System Behaviour of Lightweight Machines. --, 2009. [PUMA: Control Device ISW Lightweight Machine, Model, Real-Time Reduction, Simulation Vibration]

P. Sekler, und A. Verl. Present and Future Applications of Real-Time Simulation. Present and Future Applications of Real-Time Simulation.. --, 2008. [PUMA: Hardware-in-the-Loop ISW Real-time Simulation,]

Röck S. Hoher, S.. A Contribution to the Real-time Simulation of Coupled Finite Element Models ofMachine Tools - a Numerical Comparison: A Contribution to the Real-time Simulation of Coupled Finite Element Models ofMachine Tools - a Numerical Comparison. --, 2011. [PUMA: Component-based ISW Local Partitioned Real-time integration, modeling, simulation simulation,]

M. Abel, L. Contreras, und P. Klemm. Application of RT-Preempt Linux and sercos III for Real-time Simulation,Thirtheenth Real-Time Linux Workshop, October 20 to 22, 2011, Prague, p. 75-80: Application of RT-Preempt Linux and sercos III for Real-time Simulation,Thirtheenth Real-Time Linux Workshop, October 20 to 22, 2011, Prague, p. 75-80. --, 2011. [PUMA: III ISW Linux, RT-Preempt Real-Time Sercos Simulation,]

Dennis Hoppe, Yosandra Sandoval, und Michael Gienger. ATOM: A Near-Real Time Monitoring Framework for HPC and Embedded Systems. PODC, (Energy Efficient Distributed and Parallel Computing)2015. [PUMA: Analysis EXCESS Energy-Efficiency Monitoring Performance Real-time myown]