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

1278.


Scientific Computing in Electrical Engineering -- Proceedings of the SCEE-2002 conference held in Eindhoven
In Schilders, W. H. A. and ter Maten, E. J. W. and Houben, S. H. M. J., Editor, Band 4 aus Mathematics in Industry
Herausgeber: Springer Berlin Heidelberg
2004

ISBN: 3540213724

1277.

Appel, Matthew F.; McKeachie, J. Ryan; Veer, Wytze E.; Benter, Thorsten
Simple induction probe electric field meter for the detection of electrical fields generated by ion-optical electrodes
Review of Scientific Instruments, 75 (8) :2603-2607
2004

1276.

Appel, Matthew F.; McKeachie, J. Ryan; Veer, Wytze E.; Benter, Thorsten
Simple induction probe electric field meter for the detection of electrical fields generated by ion-optical electrodes
Review of Scientific Instruments, 75 (8) :2603-2607
2004

1275.

Appel, Matthew F.; McKeachie, J. Ryan; van der Veer, Wytze E.; Benter, Thorsten
Simple induction probe electric field meter for the detection of electrical fields generated by ion-optical electrodes
Review of Scientific Instruments, 75 (8) :2603-2607
2004

1274.

Ehrhardt, M.; Mickens, R. E.
Solutions to the Discrete {Airy} Equation: Application to Parabolic Equation Calculations
JCAM, 172 (1) :183--206
2004

1273.

Ehrhardt, Matthias
Solutions to the discrete Airy equation: Application to parabolic equation calculations
Journal of Computational and Applied Mathematics, 172 (1) :183–206
2004
Herausgeber: North-Holland

1272.

Ehrhardt, Matthias
Solutions to the discrete Airy equation: Application to parabolic equation calculations
Journal of computational and applied mathematics, 172 (1) :183--206
2004
Herausgeber: Elsevier

1271.

Winkin, Joseph J.; Callier, Frank M.; Jacob, Birgit; Partington, Jonathan R.
Spectral factorization by symmetric extraction for distributed parameter systems
SIAM J. Control Optim., 43 (4) :1435--1466
2004

1270.

Winkler, R.
Stochastic {DAEs} in Transient Noise Simulation
In Schilders, W. and ter Maten, J. and Houben, S., Editor, Scientific Computing in Electrical Engineering at SCEE 2002, Seite 408--415
In Schilders, W. and ter Maten, J. and Houben, S., Editor
Herausgeber: Springer
2004

1269.

Kahl, Christian; Günther, Michael; Roßberg, Thilo
Structure preserving stochastic integration schemes in interest rate derivative modeling
Applied Numerical Mathematics, 58 (3) :284--295
2004
Herausgeber: North-Holland

1268.

Rommes, J.; Bomhof, C. W.; Vorst, H. A.; Maten, E. J. W.
The Application of Preconditioned {Jacobi-Davidson} Methods in Pole-zero Analysis
In W. H. A. Schilders and E. J. W. ter Maten and S. H. M. J. Houben, Editor, Scientific Computing in Electrical Engineering at SCEE 2002, Eindhoven Band 4 aus Mathematics in Industry
Seite 349--355
Herausgeber: Springer Berlin Heidelberg
2004
349--355

1267.

Abel, Ulrich; Heilmann, Margareta
The complete asymptotic expansion for Bernstein-Durrmeyer operators with Jacobi weights
Mediterranean Journal of Mathematics, 1 (4) :487-499
2004

1266.

Yurchenko, Sergey N.; Bunker, Philip R.; Kraemer, Wolfgang P.; Jensen, Per
The spectrum of singlet SiH\(_{2}\)
Canadian Journal of Chemistry, 82 (6) :694-708
2004
Herausgeber: NRC Research Press Ottawa, Canada

1265.

Yurchenko, Sergey N.; Bunker, Philip R.; Kraemer, Wolfgang P.; Jensen, Per
The spectrum of singlet SiH\(_{2}\)
Canadian Journal of Chemistry, 82 (6) :694-708
2004
Herausgeber: NRC Research Press Ottawa, Canada

1264.

Yurchenko, Sergey N.; Bunker, Philip R.; Kraemer, Wolfgang P.; Jensen, Per
The spectrum of singlet SiH2
Canadian Journal of Chemistry, 82 (6) :694-708
2004
Herausgeber: NRC Research Press Ottawa, Canada

1263.

Bartel, A
Thermal Models in Electric Circuit Design
, Scientific Computing in Electrical Engineering: Proceedings of the SCEE-2002 Conference held in EindhovenBand4, Seite 104
Springer Science & Business Media
2004

1262.

Striebel, M
Towards One-Step Multirate Methods in Chip Design
Preprint IMACM
2004
Herausgeber: Bergische Universität Wuppertal

1261.

Striebel, M
Towards One-Step Multirate Methods in Chip Design
:129--126
2004
Herausgeber: Springer-Verlag, Berlin

1260.

Striebel, M
Towards One-Step Multirate Methods in Chip Design
Preprint IMACM
2004
Herausgeber: Bergische Universität Wuppertal

1259.

Wu, Shenghai; Chen, Yangqin; Yang, Xiaohua; Guo, Yingchun; Liu, Yuyan; Li, Yan; Buenker, Robert J.; Jensen, Per
Vibronic transition moments and line intensities for H\(_{2}\)O\(^{+}\)
Journal of Molecular Spectroscopy, 225 (1) :96-106
2004
Herausgeber: Academic Press

1258.

Wu, Shenghai; Chen, Yangqin; Yang, Xiaohua; Guo, Yingchun; Liu, Yuyan; Li, Yan; Buenker, Robert J.; Jensen, Per
Vibronic transition moments and line intensities for H\(_{2}\)O\(^{+}\)
Journal of Molecular Spectroscopy, 225 (1) :96-106
2004
Herausgeber: Academic Press

1257.

Wu, Shenghai; Chen, Yangqin; Yang, Xiaohua; Guo, Yingchun; Liu, Yuyan; Li, Yan; Buenker, Robert J.; Jensen, Per
Vibronic transition moments and line intensities for H2O+
Journal of Molecular Spectroscopy, 225 (1) :96-106
2004
Herausgeber: Academic Press

1256.

Bohrmann-Linde, Claudia
Von der Elektrolysezelle zur Leuchtdiode - Elektrolumineszenz im Chemieunterricht
Praxis der Naturwissenschaften - Chemie in der Schule, 56 (6)
2004

1255.

Jacob, Birgit
What is the better signal space for discrete-time systems: l_2(\Bbb Z) or l_2(\Bbb N_0)?
SIAM J. Control Optim., 43 (4) :1521--1534
2004

1254.

Tausch, Michael W.
Zink - Ein Element von A bis Z
Praxis der Naturwissenschaften - Chemie in der Schule, 53 (7) :1
2004