Publications

Stefan Tenbohlen, and Mohammad Djamali. A dynamic top oil temperature model for online assessment of overload capability of power transformers. 2015. [PUMA: Dynamic Assessment Temperature Capability Oil Top Overload Model Transformers Online Power]

Mohammad Djamali, and Stefan Tenbohlen. A dynamic top oil temperature model for power transformers with consideration of the tap changer position. University of West Bohemia, Pilsen, 2015. [PUMA: Oil Changer Dynamic Tap Position Temperature Top Model Transformers Power]

Samuel Burbulla, and Christian Rohde. A finite-volume moving-mesh method for two-phase flow in fracturing porous media. J. Comput. Phys., 111031, 2022. [PUMA: Finite Two-phase models Dynamic in methods from:brittalenz Fracture porous am media fracture Moving-mesh ians matrix aperture volume propagation Discrete flow algorithm] URL

J. Knippers, and R Harbord. A mixed/hybrid FE formulation for solution of elasto-viscoplastic problems, Part II : dynamic loading conditions and bending problems. Computational Mechanics, (13):231- 240, 1994. [PUMA: Finite-Element-Methode mixed/hybrid knippers peer-reviewed bending elasto-viscoplastic hybrid 1994 from:petraheim itke harbord dynamic FE]

J. Knippers, and R Harbord. A mixed/hybrid FE formulation for solution of elasto-viscoplastic problems, Part II : dynamic loading conditions and bending problems. Computational Mechanics, (13):231- 240, 1994. [PUMA: Finite-Element-Methode mixed/hybrid knippers peer-reviewed bending elasto-viscoplastic hybrid 1994 itke harbord dynamic FE]

Mohammad Djamali, Stefan Tenbohlen, and G. Walker. Assessment of the dynamic overload capability of distribution transformers. 2015. [PUMA: Distribution Dynamic Assessment Overload Transformers Capability]

Jorge Christie, Jonathan James Solly, Simon Bechert, and Jan Knippers. Bending-driven Dynamic Corrugation for a Funnel Shell Design. In C. Lázaro, K.-U. Bletzinger, and E. Oñate (Eds.), Proceedings of the IASS Annual Symposium 2019 – Structural Membranes 2019, 2627–2634, Barcelona, Spain, 2019. [PUMA: corrugation funnel knippers shell 2019 solly design itke from:petraheim christie dynamic bechert bending-driven]

Jorge Christie, Jonathan James Solly, Simon Bechert, and Jan Knippers. Bending-driven Dynamic Corrugation for a Funnel Shell Design. In C. Lázaro, K.-U. Bletzinger, and E. Oñate (Eds.), Proceedings of the IASS Annual Symposium 2019 – Structural Membranes 2019, 2627–2634, Barcelona, Spain, 2019. [PUMA: corrugation funnel knippers shell 2019 solly design itke christie dynamic bechert bending-driven]

Mona Mühlich, David Horvath, Axel Körner, Riccardo La Magna, and Jan Knippers. Curated deformation - dynamic shape change of tessellated surfaces. Proceedings of the IASS Annual Symposium 2020/21, 2021. [PUMA: bending-active mühlich itech körner shape horvath deformation double magna knippers bionics curvature from:petraheim itke curated surfaces change elastic dynamic tesselated architecture]

Mona Mühlich, David Horvath, Axel Körner, Riccardo La Magna, and Jan Knippers. Curated deformation - dynamic shape change of tessellated surfaces. Proceedings of the IASS Annual Symposium 2020/21, 2021. [PUMA: bending-active mühlich itech körner shape horvath deformation double magna knippers bionics curvature itke curated surfaces change elastic dynamic tesselated architecture]

A. Schmidt, and Bernard Haasdonk. Data-driven surrogates of value functions and applications to feedback control for dynamical systems. IFAC-PapersOnLine, (51)2:307--312, 2018. [PUMA: principle, approximation, greedy optimal ians feedback techniques control, dynamic Kernel anm programming] URL

A. Schmidt, and Bernard Haasdonk. Data-driven surrogates of value functions and applications to feedback control for dynamical systems. IFAC-PapersOnLine, (51)2:307--312, 2018. [PUMA: principle, approximation, greedy optimal from:britsteiner ians feedback techniques control, dynamic Kernel anm programming] URL

Matthias Buchner, Simon Eberlein, and Rudion Krzysztof. Design of an inverter model according to the network code requirements for low-voltage grids. 2019. [PUMA: Inverter myown Dynamic Grid Simulation, Protection, Code Modelling, Requirements Stability, System, Technical Requirements, Power]

Jian-Min Li, and Jan Knippers. Designing Regular and Irregular Elastic Gridshells by Six DOF Dynamic Relaxation. In Christoph Gengnagel, Axel Kilian, Julien Nembrini, and Fabian Scheurer (Eds.), Rethinking Prototyping: Proceedings of the Design Modelling Symposium Berlin 2013, 31 -44, Universität der Künste, Berlin, 2013. [PUMA: relaxation 2013 knippers shell itke grid elastic dynamic li bauingenieurwesen gitterschale]

Jian-Min Li, and Jan Knippers. Designing Regular and Irregular Elastic Gridshells by Six DOF Dynamic Relaxation. In Christoph Gengnagel, Axel Kilian, Julien Nembrini, and Fabian Scheurer (Eds.), Rethinking Prototyping: Proceedings of the Design Modelling Symposium Berlin 2013, 31 -44, Universität der Künste, Berlin, 2013. [PUMA: relaxation 2013 knippers shell itke from:petraheim grid elastic dynamic li bauingenieurwesen gitterschale]

Qi Feng, Walther Maier, Steffen Braun, and Hans-Christian Möhring. Detection and Identification of Nonlinear Contact Dynamics at Workpiece Clamping Positions. Journal of machine engineering, (1)23:114-122, March 2023. [PUMA: myown test contact ifw clamping dynamic] URL

Mohsen Nemati, M. Imran, B. Meyer, Martin Braun, H. Mueller, and Stefan Tenbohlen. Development of Generic Dynamic Models for Distributed Generators in Microgrids. 2013. [PUMA: Dynamic Generators Distributed Microgrids Generic Models]

Pascal Wiest, Katharina Frey, Krzystzof Rudion, and Alexander Probst. Dynamic Curtailment Method for Renewable Energy Sources in Distribution Grid Planning. 2016. [PUMA: Sources Dynamic Renewable Curtailment for Method Energy]

Valentin Falkenhahn, Tobias Mahl, Alexander Hildebrandt, Rüdiger Neumann, and Oliver Sawodny. Dynamic Modeling of Bellows-Actuated Continuum Robots Using the Euler–Lagrange Formalism. IEEE Transactions on Robotics, (31)6:1483--1496, December 2015. [PUMA: ISYS Festo robotics BHA dynamic mechanics model]

Valentin Falkenhahn, Tobias Mahl, Alexander Hildebrandt, Rüdiger Neumann, and Oliver Sawodny. Dynamic modeling of constant curvature continuum robots using the Euler-Lagrange formalism. IEEE/ RSJ International Conference on Intelligent Robots and Systems (IROS), 2428--2433, Chicago, IL, USA, September 2014. [PUMA: ISYS Festo robotics BHA dynamic model]