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
- 1996
629.
Günther, Michael; Rentrop, Peter
The differential-algebraic index concept in electric circuit simulation
, Proceedings of the 3rd International Congress on Industrial and Applied MathematicsBand76, Seite 91–94
Herausgeber: Akademie Verlag Berlin
1996628.
The differential-algebraic index concept in electric circuit simulation
Zeitschrift fur angewandte Mathematik und Mechanik, 76 (1) :91--94
1996627.
Denk, Georg; Günther, Michael
The influence of MOSFET model and network equations on circuit simulation
Preprint (1842)
1996
Herausgeber: Technische Hochschule Darmstadt626.
Polyansky, Oleg L.; Jensen, Per; Tennyson, Jonathan
The potential energy surface of H\(_{2}\)\(^{16}\)O
Journal of Chemical Physics, 105 (15) :6490-6497
1996625.
Polyansky, Oleg L.; Jensen, Per; Tennyson, Jonathan
The potential energy surface of H\(_{2}\)\(^{16}\)O
Journal of Chemical Physics, 105 (15) :6490-6497
1996624.
Polyansky, Oleg L.; Jensen, Per; Tennyson, Jonathan
The potential energy surface of H216O
Journal of Chemical Physics, 105 (15) :6490-6497
1996623.
Polyansky, Oleg L.; Jensen, Per; Tennyson, Jonathan
The Potential Energy Surface of Hydrogen Sulfide
Journal of Molecular Spectroscopy, 178 (2) :184-188
1996
Herausgeber: Academic Press622.
Polyansky, Oleg L.; Jensen, Per; Tennyson, Jonathan
The Potential Energy Surface of Hydrogen Sulfide
Journal of Molecular Spectroscopy, 178 (2) :184-188
1996
Herausgeber: Academic Press621.
Polyansky, Oleg L.; Jensen, Per; Tennyson, Jonathan
The Potential Energy Surface of Hydrogen Sulfide
Journal of Molecular Spectroscopy, 178 (2) :184-188
1996
Herausgeber: Academic Press620.
Kozin, Igor N.; Jensen, Per; Polanz, Oliver; Klee, Stefan; Poteau, Laurent; Demaison, Jean
The Rotational Spectrum of H\(_{2}\)Te
Journal of Molecular Spectroscopy, 180 (2) :402-413
1996
Herausgeber: Academic Press619.
Kozin, Igor N.; Jensen, Per; Polanz, Oliver; Klee, Stefan; Poteau, Laurent; Demaison, Jean
The Rotational Spectrum of H\(_{2}\)Te
Journal of Molecular Spectroscopy, 180 (2) :402-413
1996
Herausgeber: Academic Press618.
Kozin, Igor N.; Jensen, Per; Polanz, Oliver; Klee, Stefan; Poteau, Laurent; Demaison, Jean
The Rotational Spectrum of H2Te
Journal of Molecular Spectroscopy, 180 (2) :402-413
1996
Herausgeber: Academic Press617.
Bunker, Philip R.; Jensen, Per; Yamaguchi, Yukio; Schaefer III, Henry F.
The Rovibrational Energy Levels of Quasilinear c\verb=~= \(^{1}\)A\(_{1}\) Methylene
Journal of Molecular Spectroscopy, 179 (2) :263-268
1996
Herausgeber: Academic Press616.
Bunker, Philip R.; Jensen, Per; Yamaguchi, Yukio; Schaefer III, Henry F.
The Rovibrational Energy Levels of Quasilinear c\verb=~= \(^{1}\)A\(_{1}\) Methylene
Journal of Molecular Spectroscopy, 179 (2) :263-268
1996
Herausgeber: Academic Press615.
Bunker, Philip R.; Jensen, Per; Yamaguchi, Yukio; Schaefer III, Henry F.
The Rovibrational Energy Levels of Quasilinear c~ 1A1 Methylene
Journal of Molecular Spectroscopy, 179 (2) :263-268
1996
Herausgeber: Academic Press614.
Arste, J.; Klamroth, Kathrin; Mengersen, Ingrid
Three color Ramsey numbers for small graphs
Utilitas Mathematica, 49 :85--96
1996613.
[german] Tausch, Michael W.
Ungleiche Gleichgewichte
{CHEMKON}, 3 (3) :123--127
1996
Herausgeber: Wiley- 1995
612.
Mengel, Markus; Jensen, Per
A Theoretical Study of the Stark Effect in Triatomic Molecules: Application to H\(_{2}\)O
Journal of Molecular Spectroscopy, 169 (1) :73-91
1995
Herausgeber: Academic Press611.
Mengel, Markus; Jensen, Per
A Theoretical Study of the Stark Effect in Triatomic Molecules: Application to H\(_{2}\)O
Journal of Molecular Spectroscopy, 169 (1) :73-91
1995
Herausgeber: Academic Press610.
Mengel, Markus; Jensen, Per
A Theoretical Study of the Stark Effect in Triatomic Molecules: Application to H2O
Journal of Molecular Spectroscopy, 169 (1) :73-91
1995
Herausgeber: Academic Press609.
Jensen, Per; Brumm, Martin; Kraemer, Wolfgang P.; Bunker, Philip R.
A Treatment of the Renner Effect Using the MORBID Hamiltonian
Journal of Molecular Spectroscopy, 171 (1) :31-57
1995
Herausgeber: Academic Press608.
Jensen, Per; Brumm, Martin; Kraemer, Wolfgang P.; Bunker, Philip R.
A Treatment of the Renner Effect Using the MORBID Hamiltonian
Journal of Molecular Spectroscopy, 171 (1) :31-57
1995
Herausgeber: Academic Press607.
Jensen, Per; Brumm, Martin; Kraemer, Wolfgang P.; Bunker, Philip R.
A Treatment of the Renner Effect Using the MORBID Hamiltonian
Journal of Molecular Spectroscopy, 171 (1) :31-57
1995
Herausgeber: Academic Press606.
Jensen, Per; Brumm, Martin; Kraemer, Wolfgang P.; Bunker, Philip R.
An ab Initio Calculation of the Rovibronic Energies of the CH\(_{2}\)\(^{+}\) Molecule
Journal of Molecular Spectroscopy, 172 (1) :194-204
1995
Herausgeber: Academic Press605.
Jensen, Per; Brumm, Martin; Kraemer, Wolfgang P.; Bunker, Philip R.
An ab Initio Calculation of the Rovibronic Energies of the CH\(_{2}\)\(^{+}\) Molecule
Journal of Molecular Spectroscopy, 172 (1) :194-204
1995
Herausgeber: Academic Press