Dynamic Iteration Schemes
Dynamic iteration via source coupling
Standard time-integration methods solve transient problems all at once. This may become very inefficient or impossible for large systems of equations. Imaging that such large systems often stem from a coupled problem formulation, where different physical phenomena interact and need to be coupled in order to produce a precise mathematical model.
E.g. highly integrated electric circuits (as in memory chips or CPUs) produce heat, which effects in turn their behavior as electrical system; thus one needs to couple electric and thermal subproblem descriptions. On the one hand, this creates multiple time scales due to different physical phenomena, which demands an efficient treatment, see multirate. On the other hand, in a professional environment one usually has dedicated solvers for the subproblems, which need to be used, and an overall problem formulation is not feasible for any of the involved tools.
For those partitioned problems a dynamic iteration method becomes beneficial or even the sole way-out: it keeps the subproblems separate, solves subproblems sequentially (or in parallel) and iterates until convergence (fixed-point interation). Thus the subproblem's structure can be exploited in the respective integration.
To guarantee or to speed up convergence the time interval of interest is split into a series of windows. Then the time-integration of the windows is applied sequentially and in each window the subproblems are solved iteratively by your favoured method.
Group members working on that field
- Andreas Bartel
- Michael Günther
Former and ongoing Projects
Cooperation
- Herbert De Gersem, Katholieke Universiteit Leuven
Publications
- 2002
1114.
Dearing, P.M.; Hamacher, Horst W.; Klamroth, Kathrin
Dominating sets for rectilinear center location problems with polyhedral barriers
Naval Research Logistics, 49 :647-665
20021113.
Ehrhardt, M.
Efficient Numerical Implementation of Discrete Transparent Boundary Conditions for Parabolic Equations
Proceedings of the Sixth European Conference on Underwater Acoustics, June 24-27, 2002, Gdansk, Poland, Seite 381--386
20021112.
Ehrhardt, Matthias
Efficient numerical implementation of discrete transparent boundary conditions for parabolic equations in underwater acoustics
Acta Acustica united with Acustica, 88 (5) :711--713
2002
Herausgeber: S. Hirzel Verlag1111.
Ehrhardt, Matthias
Efficient numerical implementation of discrete transparent boundary conditions for parabolic equations in underwater acoustics
Acta Acustica united with Acustica, 88 (5) :711–713
2002
Herausgeber: S. Hirzel Verlag GmbH1110.
Tausch, Michael W.; Bohrmann, Claudia; Seesing, Michael
Eine no-cost Brennstoffzelle
Praxis der Naturwissenschaften - Chemie in der Schule, 51 (6)
20021109.
[german] Bohrmann, Claudia; Tausch, Michael W.
Elektrochemolumineszenz mit unbedenklichen Chemikalien: Das leuchtende Scherblatt
Chemie in unserer Zeit, 36 (3) :164--167
2002
Herausgeber: Wiley1108.
Tausch, Michael W.; Korn, S.
Experimentelle Schulchemie
In W. Gl{\"o}ckner and W. Jansen, Editor
Kapitel Modellversuche zum Zyklus Photosynthese-Atmung, Seite 8
Herausgeber: Aulis, K{\"o}ln
2002
81107.
Winkler, J.; Blank, P.; Glaser, K.; Gomes, J. A. G.; Habram, M.; Jambert, C.; Jaeschke, W.; Konrad, S.; Kurtenbach, Ralf; Lenschow, P.; L{ö}rzer, Jutta C.; Perros, P. E.; Pesch, M.; Pr{ü}mke, H. J.; Rappengl{ü}ck, Bernhard; Schmitz, Th.; Slemr, F.; Volz-Thomas, A.; Wickert, B.
Ground-based and airborne measurements of nonmethane hydrocarbons in BERLIOZ: Analysis and selected results
Journal of Atmospheric Chemistry, 42 (1-3) :465-492
20021106.
Winkler, J.; Blank, P.; Glaser, K.; Gomes, J. A. G.; Habram, M.; Jambert, C.; Jaeschke, W.; Konrad, S.; Kurtenbach, Ralf; Lenschow, P.; Lörzer, Jutta C.; Perros, P. E.; Pesch, M.; Prümke, H. J.; Rappenglück, Bernhard; Schmitz, Th.; Slemr, F.; Volz-Thomas, A.; Wickert, B.
Ground-based and airborne measurements of nonmethane hydrocarbons in BERLIOZ: Analysis and selected results
Journal of Atmospheric Chemistry, 42 (1-3) :465-492
20021105.
Winkler, J.; Blank, P.; Glaser, K.; Gomes, J. A. G.; Habram, M.; Jambert, C.; Jaeschke, W.; Konrad, S.; Kurtenbach, Ralf; Lenschow, P.; L{ö}rzer, Jutta C.; Perros, P. E.; Pesch, M.; Pr{ü}mke, H. J.; Rappengl{ü}ck, Bernhard; Schmitz, Th.; Slemr, F.; Volz-Thomas, A.; Wickert, B.
Ground-based and airborne measurements of nonmethane hydrocarbons in BERLIOZ: Analysis and selected results
Journal of Atmospheric Chemistry, 42 (1-3) :465-492
20021104.
Fink, Ewald H.; Ramsay, D. A.
High-resolution study of the A\verb=~=\(^{2}\)A' → X\verb=~=\(^{2}\)A'' transition of DO\(_{2}\): Analysis of the 000-000 band
Journal of Molecular Spectroscopy, 216 (2) :322-334
2002
Herausgeber: Academic Press1103.
Fink, Ewald H.; Ramsay, D. A.
High-resolution study of the A\verb=~=\(^{2}\)A' → X\verb=~=\(^{2}\)A'' transition of DO\(_{2}\): Analysis of the 000-000 band
Journal of Molecular Spectroscopy, 216 (2) :322-334
2002
Herausgeber: Academic Press1102.
Fink, Ewald H.; Ramsay, D. A.
High-resolution study of the A~2A' → X~2A" transition of DO2: Analysis of the 000-000 band
Journal of Molecular Spectroscopy, 216 (2) :322-334
2002
Herausgeber: Academic Press1101.
Tausch, Michael W.; Wachtendonk, M.
Induktiv zu den Molekülen - ein Unterrichtsbaustein zur Einführung des Molekülbegriffs
Praxis der Naturwissenschaften - Chemie in der Schule, 51 (6) :8
20021100.
Schandl, Bernd; Klamroth, Kathrin; Wiecek, Margaret M.
Introducing oblique norms into multiple criteria programming
Journal of Global Optimization, 23 :81-97
20021099.
Bohrmann-Linde, Claudia
Labothek Duisburg
Praxis der Naturwissenschaften - Chemie in der Schule, 51 (8)
20021098.
Tausch, Michael W.; Wachtendonk, M.; Buric, R.; Krollmann, P.; Schmitz, W.; Schulze, I.; Wambach, H.
Lehrerband zu CHEMIE 2000+, Lehrbuch für die gymnasiale Oberstufe, Band 1
Herausgeber: C. C. Buchner, Bamberg
20021097.
Bartel, Andreas; Günther, Michael; Kværnø, Anne
Multirate methods in electrical circuit simulation
In Anile, Angelo Marcello and Capasso, Vincenzo and Greco, Antonio, Editor, Progress in Industrial Mathematics at ECMI 2000ausMathematics in Industry, Seite 258–265
In Anile, Angelo Marcello and Capasso, Vincenzo and Greco, Antonio, Editor
Herausgeber: Springer Berlin Heidelberg
20021096.
Bartel, Andreas; Günther, Michael; Kværnø, Anne
Multirate methods in electrical circuit simulation
In A.M. Anile and V. Capasso and A. Greco, Editor, Progress in Industrial Mathematics at ECMI 2000ausMathematics in Industry 1, Seite 258--265
Springer Berlin Heidelberg
In A.M. Anile and V. Capasso and A. Greco, Editor
Herausgeber: Springer-Verlag, Berlin
20021095.
Klar, A; Materne, T; Wegener, R
Multivalued fundamental diagrams and stop and go waves for continuum traffic equations
20021094.
Schandl, Bernd; Klamroth, Kathrin; Wiecek, Margaret M.
Norm-Based Approximation in Multicriteria Programming
Computers and Mathematics with Applications, 44 :925-942
20021093.
Bartel, Andreas; Günther, Michael; Pulch, Roland; Rentrop, Peter
Numerical techniques for different time scales in electric circuit simulation
In Breuer, Michael and Durst, Franz and Zenger, Christoph, Editor, High Performance Scientific and Engineering ComputingBand21ausLecture Notes in Computational Science and Engineering, Seite 343–360
In Breuer, Michael and Durst, Franz and Zenger, Christoph, Editor
Herausgeber: Springer Berlin Heidelberg
20021092.
Bartel, A; Pulch, R; Rentrop, P
Numerical techniques for different time scales in electric circuit simulation
In M. Breuer and F. Durst and Chr. Zenger, Editor, High Performance Scientific And Engineering Computing: Proceedings of the 3rd International FORTWIHR Conference on HPSEC, Erlangen, March 12--14, 2001Band21ausLecture Notes in Computational Science and Engineering, Seite 343--360
Springer Berlin Heidelberg
In M. Breuer and F. Durst and Chr. Zenger, Editor
20021091.
Tausch, Michael W.; Knauf, U.
Online-Materialien zum Thema Ozon, Hypermedia-Netzwerk mit Experimenten, Arbeitsblättern, Folien, Videos, Links etc.
Online ( www.lehrer-online.de )
20021090.
Tausch, Michael W.
PISA - für Insider nicht viel Neues
Praxis der Naturwissenschaften - Chemie in der Schule, 51 (6) :11
2002