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



2020

4266.

Hanebaum, Sonja
Neuartige (di-)amidbasierte Tenside auf Basis von nachwachsenden Rohstoffen
2020

4265.

Wiesen, P.; Klosterköther, A.; Kleffmann, J.; Kurtenbach, R.
NO2 measurements in the city centre of Wuppertal – Contribution of buses to the NOx emission/NO2-Messungen in der Wuppertaler Innenstadt: Anteil von Bussen an der NOx-Emission
Gefahrstoffe, 80 (11-12) :421--426
2020
ISSN: 0949-8036

4264.

Jacob, Birgit; Mironchenko, Andrii; Partington, Jonathan R.; Wirth, Fabian
Non-coercive Lyapunov functions for input-to-state stability of infinite-dimensional systems
SIAM Journal on Control and Optimization, 58 (5) :2952-2978
2020

4263.

Beck, Christian; Jentzen, Arnulf; Kruse, Thomas
Nonlinear Monte Carlo methods with polynomial runtime for high-dimensional iterated nested expectations
arXiv preprint arXiv:2009.13989
2020

4262.

Beck, Christian; Jentzen, Arnulf; Kruse, Thomas
Nonlinear Monte Carlo methods with polynomial runtime for high-dimensional iterated nested expectations
Preprint
2020

4261.

Heilmann, Margareta; Raşa, Ioan
Note on a proof for the representation of the k-th order Kantorovich modification of linking Baskakov type operators
Mathematical Analysis I: Approximation Theory , Seite 89-94
ICRAPAM 2018
New Delhi, India
October 23-25
In Naokant Deo, Vijay Gupta, Ana Maria Acu , Editor
Herausgeber: Springer, Berlin
2020

4260.

Heilmann, Margareta; Raşa, Ioan
Note on a proof for the representation of the kth order Kantorovich modification of linking Baskakov type operators
In Deo, Naokant and Gupta, Vijay and Acu, Ana Maria and Agrawal, P. N., Editor, Mathematical Analysis I: Approximation Theory , Seite 89–93
In Deo, Naokant and Gupta, Vijay and Acu, Ana Maria and Agrawal, P. N., Editor
Herausgeber: Springer Singapore
2020

4259.

Fatoorehchi, Hooman
Numerical and semi-numerical solutions of a modified Thévenin model with application to the dynamic analysis of electrochemical batteries
2020

4258.

Gesell, Hendrik; Nandana, Varchasvi; Janoske, Uwe
Numerical study on the heat transfer performance and efficiency in a rectangular duct with new winglet shapes in turbulent flow
Thermal Science and Engineering Progress, 17 :100490
Juni 2020
Herausgeber: Elsevier {BV}

4257.

Damm, Tobias; Jacob, Birgit
On coercivity and the frequency domain condition in indefinite LQ-control
Ann. Acad. Rom. Sci. Ser. Math. Appl., 12 (1-2) :553-563
2020

4256.

Schulze, Britta; Stiglmayr, Michael; Paquete, Luís; Fonseca, Carlos M.; Willems, David; Ruzika, Stefan
On the Rectangular Knapsack Problem Approximation of a Specific Quadratic Knapsack Problem
Mathematical Methods of Operations Research, 92 (1) :107-132
2020

4255.

Csomós, Petra; Ehrhardt, Matthias; Farkas, Bálint
Operator splitting for abstract cauchy problems with dynamical boundary condition
arXiv preprint arXiv:2004.13503
2020

4254.

Csomós, Petra; Ehrhardt, Matthias; Farkas, Bálint
Operator splitting for abstract Cauchy problems with dynamical boundary conditions
2020

4253.

Kruse, Thomas; Strack, Philipp
Optimal control of an epidemic through social distancing
Available at SSRN 3581295
2020

4252.

Ankirchner, Stefan; Fromm, Alexander; Kruse, Thomas; Popier, Alexandre
Optimal position targeting via decoupling fields
The Annals of Applied Probability, 30 (2) :644--672
2020
Herausgeber: Institute of Mathematical Statistics

4251.

Ankirchner, Stefan; Fromm, Alexander; Kruse, Thomas; Popier, Alexandre
Optimal position targeting via decoupling fields
The Annals of Applied Probability, 30 (2) :644–672
2020
Herausgeber: Institute of Mathematical Statistics

4250.

Beck, Christian; Hornung, Fabian; Hutzenthaler, Martin; Jentzen, Arnulf; Kruse, Thomas
Overcoming the curse of dimensionality in the numerical approximation of Allen--Cahn partial differential equations via truncated full-history recursive multilevel Picard approximations
Journal of Numerical Mathematics, 28 (4) :197--222
2020
Herausgeber: De Gruyter

4249.

Beck, Christian; Hornung, Fabian; Hutzenthaler, Martin; Jentzen, Arnulf; Kruse, Thomas
Overcoming the curse of dimensionality in the numerical approximation of Allen-Cahn partial differential equations via truncated full-history recursive multilevel Picard approximations
Journal of Numerical Mathematics, 28 (4) :197–222
2020
Herausgeber: De Gruyter

4248.

Hutzenthaler, Martin; Jentzen, Arnulf; Kruse, Thomas; Anh Nguyen, Tuan; Wurstemberger, Philippe
Overcoming the curse of dimensionality in the numerical approximation of semilinear parabolic partial differential equations
Proceedings of the Royal Society A, 476 (2244) :20190630
2020
Herausgeber: The Royal Society Publishing

4247.

Hutzenthaler, Martin; Jentzen, Arnulf; Kruse, Thomas; Anh Nguyen, Tuan; Wurstemberger, Philippe
Overcoming the curse of dimensionality in the numerical approximation of semilinear parabolic partial differential equations
Proceedings of the Royal Society A, 476 (2244) :20190630
2020
Herausgeber: The Royal Society Publishing

4246.

Bolten, M.; Friedhoff, S.; Hahne, J.; Schöps, S.
Parallel-in-time simulation of an electrical machine using MGRIT
Comput. Vis. Sci., 23 (1-4) :Paper No. 14, 14
2020

4245.

Bolten, Matthias; Friedhoff, S.; Hahne, J.; Schöps, S.
Parallel-in-time simulation of an electrical machine using MGRIT
Comput. Vis. Sci., 23 (1-4) :Paper No. 14, 14
2020

4244.

Bolten, M.; Friedhoff, S.; Hahne, J.; Schöps, S.
Parallel-in-time simulation of an electrical machine using MGRIT
Comput. Vis. Sci., 23 (1-4) :Paper No. 14, 14
2020

4243.

Schlachter, Louisa; Totzeck, Claudia
Parameter identification in uncertain scalar conservation laws discretized with the discontinuous stochastic Galerkin Scheme
Communications in Computational Physics, 28 (4) :1585-1608
2020

4242.

Brunnert, Rainer; Tausch, Michael W.; Bohrmann-Linde, Claudia
Paving the way for curriculum innovation through participatory action research in bilingual chemistry and bilingual biology lessons at German secondary schools: Results from a survey among teachers concerning their material demands
ARISE, 1 (3) :17--23
2020