Applied and Computational Mathematics (ACM)

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

Publications



2004

1253.

Tausch, Michael W.; Rohe, Bernd
Zinksulfat - Ein technisches Produkt mit didaktisch interessanten Facetten
Praxis der Naturwissenschaften - Chemie in der Schule, 53 (7) :21
2004
2003

1252.

Houben, S. H. M. J.; Maten, E. J. W.; Sevat, M.F.
A new transient integration method for free-running oscillators
In R. Vahrmann, Editor, Analog 2003 -- Entwicklung von Analogschaltungen mit CAE-Methoden mit dem Schwerpunkt Entwurfsverfahren für Automotive-Anwendungen, Seite 61-66
In R. Vahrmann, Editor
September 2003

1251.

Feldmann, Jorg-Uwe; Günther, Michael
Simulation apparatus and simulation method for a system having analog and digital elements
August 2003

1250.

Tausch, Michael W.; Goodwin, Alan
... zur Forschung in der Didaktik: 7 Thesen ...
Chemie in unserer Zeit, 37 (3) :210--211
2003
Herausgeber: Wiley

1249.

[german] Tausch, Michael W.
1 mol Quanten? - Ja bitte, aber blaue
Praxis der Naturwissenschaften - Chemie in der Schule, 52 (7) :23
2003

1248.

Ehrhardt, Matthias
A fast method to implement non-local discrete transparent boundary conditions for the Schrödinger equation
PAMM: Proceedings in Applied Mathematics and Mechanics, 2 (1) :424–425
2003
Herausgeber: WILEY-VCH Verlag

1247.


A fast method to implement non-local discrete transparent boundary conditions for the Schrödinger equation
, PAMM: Proceedings in Applied Mathematics and MechanicsBand2, Seite 424--425
WILEY-VCH Verlag Berlin
2003

1246.

Günther, Michael
A refined PDAE network model for a CMOS ring oscillator
In Antreich, K. and {et al.}, Editor, Modeling, Simulation, and Optimization of Integrated Circuits: Proceedings of a Conference held at the Mathematisches Forschungsinstitut, Oberwolfach, November 25-December 1, 2001, Seite 203--218
Birkhäuser Basel
In Antreich, K. and {et al.}, Editor
Herausgeber: Birkh\"auser Verlag, Basel
2003

1245.

Günther, Michael
A refined PDAE network model for a CMOS ring oscillator
In Antreich, Kurt and Bulirsch, Roland and Gilg, Albert and Rentrop, Peter, Editor, Modeling, Simulation and Optimization of Integrated CircuitsausISNM International Series of Numerical Mathematics, Seite 203–218
In Antreich, Kurt and Bulirsch, Roland and Gilg, Albert and Rentrop, Peter, Editor
Herausgeber: Birkhäuser Basel
2003

1244.

Günther, Michael
A refined PDAE network model for a CMOS ring oscillator
In Antreich, Kurt and Bulirsch, Roland and Gilg, Albert and Rentrop, Peter, Editor, Modeling, Simulation and Optimization of Integrated CircuitsausISNM International Series of Numerical Mathematics, Seite 203–218
In Antreich, Kurt and Bulirsch, Roland and Gilg, Albert and Rentrop, Peter, Editor
Herausgeber: Birkhäuser Basel
2003

1243.

Jacob, Birgit
An operator theoretical approach towards systems over the signal space l_2(\Bbb Z)
Integral Equations Operator Theory, 46 (2) :189--214
2003

1242.

Al, Guiseppe; Bartel, Andreas; Günther, Michael
Analysis of coupled systems in chip design
Herausgeber: Universität Karlsruhe, Institut für Wissenschaftliches Rechnen und~…
2003

1241.

Ehrhardt, Matthias
Approximation, stability and fast calculation of non-local boundary conditions for the Schrödinger equation
Commun. Math. Sci, 1 (3) :501--556
2003

1240.

Heijmen, T. G. A.; Lin, C.; Maten, E. J. W.; Sevat, M. F.
Augmented Lagrangian Algorithm for Optimizing Analog Circuit Design
In A. Buikis and R. Ciegis and A. D. Fitt, Editor, Progress in Industrial Mathematics at {ECMI} 2002, Jurmala Band 5 aus Mathematics in Industry
Seite 179--184
Herausgeber: Springer Berlin Heidelberg
2003
179--184

1239.

Tausch, Michael W.; Wachtendonk, Magdalene; Bohrmann-Linde, Claudia; Krollmann, P.; Schmitz, W.; Wambach, H.
CHEMIE 2000+ Band 2, Lehrbuch für die gymnasiale Oberstufe
Herausgeber: C.C.Buchner, Bamberg
2003

1238.

Tausch, Michael W.; Szemenyei, M.; Maibaum, R.; al., et
Chemie 2000+ Online - Internet-Portal mit Online-Service für Unterricht und Studium
Online
2003

1237.

Rentrop, P.; G\"unther, Michael; Hoschek, M.; Feldmann, U.
CHORAL - a charge-oriented algorithm for the numerical integration of electrical circuits
In W. Jäger and H.-J. Krebs, Editor, Mathematics - Key Technology for the Future. Joint Projects Between Universities and Industry
Seite 429-438
Herausgeber: Springer Verlag, Berlin
2003
429-438

1236.

Rentrop, P.; Günther, M.; Hoschek, M.; Feldmann, U.
CHORAL - a charge-oriented algorithm for the numerical integration of electrical circuits
In Jäger, WIlli and Krebs, Hans-Joachim, Editor
Seite 429–438
Herausgeber: Springer Berlin Heidelberg
2003
429–438

1235.

Rentrop, P.; Günther, M.; Hoschek, M.; Feldmann, U.
CHORAL - a charge-oriented algorithm for the numerical integration of electrical circuits
In Jäger, WIlli and Krebs, Hans-Joachim, Editor
Seite 429–438
Herausgeber: Springer Berlin Heidelberg
2003
429–438

1234.

Heilmann, Margareta
Commutativity of Durrmeyer-type modifications of Meyer-König and Zeller and Baskakov-operators
Constructive Theory of Functions - Proceedings of the International Conference, Varna, Bulgaria, 2002, Seite 295-301
In B. Bojanov et al., Editor
Herausgeber: Sofia: DARBA
2003

1233.

Jacob, Birgit; Partington, Jonathan R.; Pott, Sandra
Conditions for admissibility of observation operators and boundedness of Hankel operators
Integral Equations Operator Theory, 47 (3) :315--338
2003

1232.

Günther, Michael; Jüngel, Ansgar
Die Monte-Carlo-Methode
Finanzderivate mit MATLAB{\textregistered}: Mathematische Modellierung und numerische Simulation :97--148
2003
Herausgeber: Vieweg+ Teubner Verlag

1231.

Tausch, Michael W.; Haas, L.
Die Standard-Matrix, ein Paradigma für den Chemieunterricht
Praxis der Naturwissenschaften - Chemie in der Schule, 52 (1) :7
2003

1230.

Ehrhardt, Matthias
Discrete transparent boundary conditions for the Schrödinger equation: Fast calculation, approximation, and stability
Communications in Mathematical Sciences, 1 (3) :501–556
2003
Herausgeber: International Press

1229.

Ehrhardt, Matthias
Discrete transparent boundary conditions for the Schrödinger equation: fast calculation, approximation, and stability
2003