Thermal Coupling
The performance of high-tech circuitry such as processors and power devices also largely depends on the thermal level. Semiconductor devices loss their ability of fast switching if the temperature increases to much. Furthermore after a critical temperature is reached the device will be destroyed. Therefore monitoring temperature and regulating cooling are important issues.
In our research, we set up simulation models for semiconductor equations and integrated circuits, which incorporate transient temperature changes in the device and heat conduction between devices. That is an electric network as well as semiconductor equations have to be equipped with an appropriate model for power transfer and heat conduction.
Since this multiphysical problem of coupled electric networks and heat conduction exhibits widely separated time scales, not only the model but also the numerical algorithms need be design to enable fast simulations. Multirate cosimulation is an good choice if the coupling is appropriately set up. Please see also: (Coupled DAEs).
Publications
- 2022
4893.
Stiglmayr, Michael; Uhlemeyer, Svenja; Uhlemeyer, Björn; Zdrallek, Markus
Determining Cost-Efficient Controls of Electrical Energy Storages Using Dynamic Programming
20224892.
Brinda, Torsten; Humbert, Ludger; Kramer, Matthias; Schmitz, Denise
Developing Informatics Modules for Teachers of All Subjects Based on Professional Activities
In Therese Keane, Cathy Lewin, Thorsten Brinda, Rosa Bottino, Editor
Seite 451–462
Herausgeber: Springer
2022
451–462ISBN: 978-3-031-43393-1
4891.
[german] Cornelius, Soraya; Bohrmann-Linde, Claudia
Digitalisierung: Mit einem E‐Book in die organische Chemie starten
Nachrichten aus der Chemie, 70 (1) :34-36
20224890.
Jäschke, Jens; Ehrhardt, Matthias; Günther, Michael; Jacob, Birgit
Discrete port-Hamiltonian coupled heat transfer
In Ehrhardt, Matthias and Günther, Michael, Editor, Progress in Industrial Mathematics at ECMI 2021, Seite 439–445
In Ehrhardt, Matthias and Günther, Michael, Editor
Herausgeber: Springer Cham
20224889.
Jäschke, Jens; Ehrhardt, Matthias; Günther, Michael; Jacob, Birgit
Discrete port-Hamiltonian coupled heat transfer
In Ehrhardt, Matthias and Günther, Michael, Editor, Progress in Industrial Mathematics at ECMI 2021, Seite 439–445
In Ehrhardt, Matthias and Günther, Michael, Editor
Herausgeber: Springer Cham
20224888.
Jäschke, Jens; Ehrhardt, Matthias; Günther, Michael; Jacob, Birgit
Discrete port-Hamiltonian coupled heat transfer
In Ehrhardt, Matthias and Günther, Michael, Editor, Progress in Industrial Mathematics at ECMI 2021, Seite 439–445
In Ehrhardt, Matthias and Günther, Michael, Editor
Herausgeber: Springer Cham
20224887.
Jäschke, Jens; Ehrhardt, M.; Günther, M.; Jacob, Birgit
Discrete port-Hamiltonian Coupled Heat Transfer
Progress in Industrial Mathematics at ECMI 2021, The European Consortium for Mathematics in Industry, Seite 439-445
In M. Ehrhardt and M. Günther, Editor
Herausgeber: Springer
20224886.
Jäschke, Jens; Ehrhardt, Matthias; Günther, Michael; Jacob, Birgit
Discrete port-Hamiltonian coupled heat transfer
Progress in Industrial Mathematics at ECMI 2021
Seite 439--445
Herausgeber: Springer International Publishing Cham
2022
439--4454885.
Edeko, Nikolai; Kreidler, Henrik
Distal systems in topological dynamics and ergodic theory
20224884.
Lugo, Pedro L.; Straccia, V.G.; Rivela, Cynthia B.; Patroescu-Klotz, Iulia; Illmann, Niklas; Teruel, Mariano A.; Wiesen, Peter; Blanco, María B.
Diurnal photodegradation of fluorinated diketones (FDKs) by OH radicals using different atmospheric simulation chambers: Role of keto-enol tautomerization on reactivity
Chemosphere, 286 :131562
Januar 2022
ISSN: 004565354883.
Hilbig, André
Diversität im Informatikunterricht als Gestaltungsaufgabe der Fachdidaktik
10. Münsteraner Workshop zur Schulinformatik
Münster
20224882.
Khosrawi-Rad, Bijan; Grogorick, Linda; Keller, Paul; Schlimbach, Ricarda; Rinn, Heidi; Robra-Bissantz, Susanne
Do you trust the Bot? – Entwicklung und Evaluation eines Conversational Agents zur Klassifikation von Lernstilen
Seite 75-80
20. E-Learning Fachtagung Informatik (DeLFI)
Karlsruhe
2022ISBN: 978-3-88579-716-6
4881.
Rohde, Martin; Barwari, Beawer; Burgmann, Sebastian; Janoske, Uwe
Droplet motion induced by superposition of shear flow and horizontal surface vibration
International Journal of Multiphase Flow, 155 :104163
2022
Herausgeber: Pergamon4880.
McWalter, Thomas A; Kienitz, Jörg; Nowaczyk, Nikolai; Rudd, Ralph; Acar, Sarp K.
Dynamic initial margin estimation based on quantiles of Johnson distributions
Journal of Credit Risk, 18 :93–116
2022
Herausgeber: Incisive Media4879.
Kienitz, Jörg; Lee, Gordon; Nowaczyk, Nikolai; Geng, N.
Dynamically controlled kernel estimation
Risk Cutting Edge, 1
2022
Herausgeber: Incisive Media4878.
Kienitz, J.; Lee, G.; Nowaczyk, N.; Geng, N.
Dynamically Controlled Kernel Estimation
RISK, 1
20224877.
Brinda, Torsten; Humbert, Ludger; Kramer, Matthias; Schmitz, Denise
Educating All Teachers in Informatics: Necessities and Strategies
WCCE
Hiroshima, Japan
20224876.
Felpel, Mike; Kienitz, Jörg; McWalter, Thomas
Effective Markovian projection: Application to CMS spread options and mid-curve swaptions
Quantitative Finance, 22 (6) :1169–1192
2022
Herausgeber: Routledge4875.
Felpel, M.; Kienitz, J.; McWalter, T. A.
Effective Markovian projection: application to CMS spread options and mid-curve swaptions
Quantitative Finance, 22 (6) :1169-1192
2022
Herausgeber: Routledge4874.
Reiners, Malena; Klamroth, Kathrin; Heldmann, Fabian; Stiglmayr, Michael
Efficient and sparse neural networks by pruning weights in a multiobjective learning approach
Computers & Operations Research :105676
20224873.
[german] Pansegau, Svenja; Wenz, Helen; Busker, Maike
Eine experimentelle Untersuchung von Zigarettenfiltern - Inhaltsstoffe eines Zigarettenfilters
NiU-Chemie, 33 :22-25
20224872.
[german] Cornelius, Soraya; Bohrmann-Linde, Claudia
Einsatz eines digitalen & interaktiven Selbstlernbuchs zur Einführung in die organische Chemie - erste Erprobungen im Chemieunterricht und motivationale Betrachtungen
Chemie & Schule, 2022 (4) :5-9
20224871.
Clemens, Markus; Henkel, Marvin-Lucas; Kasolis, Fotios; Günther, Michael; De Gersem, Herbert; Schöps, Sebastian
Electromagnetic Quasistatic Field Formulations of Darwin Type
arXiv preprint arXiv:2204.06286
20224870.
Clemens, Markus; Henkel, Marvin-Lucas; Kasolis, Fotios; Günther, Michael; De Gersem, Herbert; Schöps, Sebastian
Electromagnetic quasistatic field formulations of Darwin type
Preprint :1–7
20224869.
Clemens, Markus; Henkel, Marvin-Lucas; Kasolis, Fotios; Günther, Michael; De Gersem, Herbert; Schöps, Sebastian
Electromagnetic quasistatic field formulations of Darwin type
Preprint :1–7
2022