Model Order Reduction
Model Order Reduction (MOR) is the art of reducing a system's complexity while preserving its input-output behavior as much as possible.
Processes in all fields of todays technological world, like physics, chemistry and electronics, but also in finance, are very often described by dynamical systems. With the help of these dynamical systems, computer simulations, i.e. virtual experiments, are carried out. In this way, new products can be designed without having to build costly prototyps.
Due to the demand of more and more realistic simulations, the dynamical systems, i.e., the mathematical models, have to reflect more and more details of the real world problem. By this, the models' dimensions are increasing and simulations can often be carried out at high computational cost only.
In the design process, however, results are needed quickly. In circuit design, e.g., structures may need to be changed or parameters may need to be altered, in order to satisfy design rules or meet the prescribed performance. One cannot afford idle time, waiting for long simulation runs to be ready.
Model Order Reduction allows to speed up simulations in cases where one is not interested in all details of a system but merely in its input-output behavior. That means, considering a system, one may ask:
- How do varying parameters influence certain performances ?
Using the example of circuit design: How do widths and lengths of transistor channels, e.g., influence the voltage gain of a circuit. - Is a system stable?
Using the example of circuit design: In which frequency range, e.g., of voltage sources, does the circuit perform as expected - How do coupled subproblems interact?
Using the example of circuit design: How are signals applied at input-terminals translated to output-pins?
Classical situations in circuit design, where one does not need to know internals of blocks are optimization of design parameters (widths, lengths, ...) and post layout simulations and full system verifications. In the latter two cases, systems of coupled models are considered. In post layout simulations one has to deal with artificial, parasitic circuits, describing wiring effects.
Model Order Reduction automatically captures the essential features of a structure, omitting information which are not decisive for the answer to the above questions. Model Order reduction replaces in this way a dynamical system with another dynamical system producing (almost) the same output, given the same input with less internal states.
MOR replaces high dimensional (e.g. millions of degrees of freedom) with low dimensional (e.g. a hundred of degrees of freedom ) problems, that are then used instead in the numerical simulation.
The working group "Applied Mathematics/Numerical Analysis" has gathered expertise in MOR, especially in circuit design. Within the EU-Marie Curie Initial Training Network COMSON, attention was concentrated on MOR for Differential Algebraic Equations. Members that have been working on MOR in the EU-Marie Curie Transfer of Knowledge project O-MOORE-NICE! gathered knowledge especially in the still immature field of MOR for nonlinear problems.
Current research topics include:
- MOR for nonlinear, parameterized problems
- structure preserving MOR
- MOR for Differential Algebraic Equations
- MOR in financial applications, i.e., option prizing
Group members working on that field
- Jan ter Maten
- Roland Pulch
Publications
- 2021
4538.
Tovar, Carmen M.; Haack, Alexander; Barnes, Ian; Bejan, Iustinian Gabriel; Wiesen, Peter
Experimental and theoretical study of the reactivity of a series of epoxides with chlorine atoms at 298 K
Physical Chemistry Chemical Physics, 23 (9) :5176-5186
20214537.
Tovar, Carmen M.; Haack, Alexander; Barnes, Ian; Bejan, Iustinian Gabriel; Wiesen, Peter
Experimental and theoretical study of the reactivity of a series of epoxides with chlorine atoms at 298 K
Physical Chemistry Chemical Physics, 23 (9) :5176-5186
20214536.
Tovar, Carmen M.; Haack, Alexander; Barnes, Ian; Bejan, Iustinian Gabriel; Wiesen, Peter
Experimental and theoretical study of the reactivity of a series of epoxides with chlorine atoms at 298 K
Physical Chemistry Chemical Physics, 23 (9) :5176-5186
20214535.
Grandrath, Rebecca; Bohrmann-Linde, Claudia
Experimentalkurs zu Biologischen Brennstoffzellen. Begleitendes E-Book für die Sekundarstufe II [Schülerversion]
20214534.
Grandrath, Rebecca; Bohrmann-Linde, Claudia
Experimentalkurs zu Biologischen Brennstoffzellen.Begleitendes E-Book für die Sekundarstufe II [Lehrerversion]
20214533.
Explicit high order one-step methods for decoupled forward backward stochastic differential equations
Adv. Appl. Math. Mech, 13 :1293--1317
20214532.
Aab, Alexander; others
Extraction of the muon signals recorded with the surface detector of the Pierre Auger Observatory using recurrent neural networks
JINST, 16 (07) :P07016
20214531.
Ferrari, Paola; Garoni, Carlo; Serra-Capizzano, Stefano
Fast parallel solver for the space-time IgA-DG discretization of the diffusion equation
J. Sci. Comput., 89 (1) :Paper No. 20, 21
20214530.
Ferrari, Paola; Garoni, Carlo; Serra-Capizzano, Stefano
Fast parallel solver for the space-time IgA-DG discretization of the diffusion equation
J. Sci. Comput., 89 (1) :Paper No. 20, 21
20214529.
[german] Bohrmann-Linde, Claudia; Meuter, Nico; Kremer, Richard; Pereira Vaz, Nuno; Venzlaff, Julian
Forschung trifft Schule - Chemie-Labothek als innovatives, vernetzendes Format
Lehrkräftebildung neu gedacht
Page 108-112
Publisher: Marcus Kubsch, Stefan Sorge, Julia Arnold, Nicole Graulich, Waxmann, Münster
2021
108-112ISBN: 978-3-8309-4349-5
4528.
Grira, A.; Kalalian, C.; Illmann, J.N.; Patroescu-Klotz, I.; El Dib, G.; Coddeville, P.; Canosa, A.; Coeur, C.; Wiesen, P.; Roth, E.; Chakir, A.; Tomas, A.
Gas-phase ozonolysis of trans-2-hexenal: Kinetics, products, mechanism and SOA formation
Atmospheric Environment, 253 :118344
May 2021
ISSN: 135223104527.
Illmann, Jan Niklas; Patroescu-Klotz, Iulia; Wiesen, Peter
Gas-phase reactivity of acyclic α,β-unsaturated carbonyls towards ozone
Physical Chemistry Chemical Physics, 23 (5) :3455--3466
2021
ISSN: 1463-9076, 1463-90844526.
Wandelt, Mich{\`e}le; Günther, Michael; Muniz, Michelle
Geometric integration on Lie groups using the Cayley transform with focus on lattice QCD
Journal of Computational and Applied Mathematics, 387 :112495
2021
Publisher: North-Holland4525.
Backhaus, Jan; Bolten, Matthias; Tanil Doganay, Onur; Ehrhardt, Matthias; Engel, Benedikt; Frey, Christian; Gottschalk, Hanno; Günther, Michael; Hahn, Camilla; Jäschke, Jens; others
GivEn - Shape optimization for gas turbines in volatile energy networks
Mathematical Modeling, Simulation and Optimization for Power Engineering and Management :71–106
2021
Publisher: Springer Cham4524.
Backhaus, J.; Bolten, Matthias; Doganay, O. T.; Ehrhardt, M.; Engel, B.; Frey, Ch.; Gottschalk, H.; Günther, M.; Hahn, C.; Jäschke, J.; Jaksch, P.; Klamroth, K.; Liefke, A.; Luft, D.; Mäde, L.; Marciniak, V.; Reese, M.; Schultes, J.; Schulz, V.
GivEn - Shape Optimization for Gas Turbines in Volatile Energy Networks
In S. Göttlich and M. Herty and A. Milde, Editor, Mathematical Modeling, Simulation and Optimization for Power Engineering and ManagementVolume34fromMathematics in Industry
In S. Göttlich and M. Herty and A. Milde, Editor
Publisher: Springer, Cham
20214523.
Backhaus, J.; Bolten, M.; Doganay, O. T.; Ehrhardt, M.; Engel, B.; Frey, Ch.; Gottschalk, H.; Günther, M.; Hahn, C.; Jäschke, J.; Jaksch, P.; Klamroth, K.; Liefke, A.; Luft, D.; Mäde, L.; Marciniak, V.; Reese, M.; Schultes, J.; Schulz, V.
GivEn - Shape Optimization for Gas Turbines in Volatile Energy Networks
In S. Göttlich and M. Herty and A. Milde, Editor, Mathematical Modeling, Simulation and Optimization for Power Engineering and ManagementVolume34fromMathematics in Industry
In S. Göttlich and M. Herty and A. Milde, Editor
Publisher: Springer, Cham
20214522.
Backhaus, Jan; Bolten, Matthias; Tanil Doganay, Onur; Ehrhardt, Matthias; Engel, Benedikt; Frey, Christian; Gottschalk, Hanno; Günther, Michael; Hahn, Camilla; Jäschke, Jens; others
GivEn - Shape optimization for gas turbines in volatile energy networks
Mathematical Modeling, Simulation and Optimization for Power Engineering and Management :71–106
2021
Publisher: Springer Cham4521.
Backhaus, Jan; Bolten, Matthias; Tanil Doganay, Onur; Ehrhardt, Matthias; Engel, Benedikt; Frey, Christian; Gottschalk, Hanno; Günther, Michael; Hahn, Camilla; Jäschke, Jens; others
GivEn - Shape optimization for gas turbines in volatile energy networks
Mathematical Modeling, Simulation and Optimization for Power Engineering and Management :71–106
2021
Publisher: Springer Cham4520.
Backhaus, J.; Bolten, M.; Doganay, O.T.; Ehrhardt, M.; Engel, B.; Frey, C.; Gottschalk, H.; Günther, M.; Hahn, C.; Jäschcke, J.; Jaksch, P.; Klamroth, K.; Liefke, A.; Luft, D.; Mäde, L.; Marciniak, V.; Reese, M.; Schultes, J.; Schulz, V.; Schmitz, S.; Steiner, J.; Stiglmayr, M.
GivEn - Shape Optimization for Gas Turbines in Volatile Energy Networks
In S. Goettlich, M. Herty and A. Milde, Editor, Mathematical MSO for Power Engineering and Management from Mathematics in Industry
Publisher: Springer Berlin/Heidelberg
20214519.
Backhaus, J.; Bolten, M.; Doganay, O. T.; Ehrhardt, M.; Engel, B.; Frey, Ch.; Gottschalk, H.; Günther, M.; Hahn, C.; Jäschke, J.; Jaksch, P.; Klamroth, K.; Liefke, A.; Luft, D.; Mäde, L.; Marciniak, V.; Reese, M.; Schultes, J.; Schulz, V.
GivEn - Shape Optimization for Gas Turbines in Volatile Energy Networks
In S. Göttlich and M. Herty and A. Milde, Editor, Mathematical Modeling, Simulation and Optimization for Power Engineering and ManagementVolume34fromMathematics in Industry
In S. Göttlich and M. Herty and A. Milde, Editor
Publisher: Springer, Cham
20214518.
Backhaus, Jan; Bolten, Matthias; Tanil Doganay, Onur; Ehrhardt, Matthias; Engel, Benedikt; Frey, Christian; Gottschalk, Hanno; Günther, Michael; Hahn, Camilla; Jäschke, Jens; others
GivEn—Shape optimization for gas turbines in volatile energy networks
Mathematical Modeling, Simulation and Optimization for Power Engineering and Management :71--106
2021
Publisher: Springer International Publishing4517.
Reininghaus, Maximilian; others
GPU Accelerated optical light propagation in CORSIKA 8
PoS, ICRC2021 :705
20214516.
Kroflič, Ana; Anders, Janine; Drventić, Ivana; Mettke, Peter; Böge, Olaf; Mutzel, Anke; Kleffmann, Jörg; Herrmann, Hartmut
Guaiacol Nitration in a Simulated Atmospheric Aerosol with an Emphasis on Atmospheric Nitrophenol Formation Mechanisms
ACS Earth and Space Chemistry, 5 (5) :1083--1093
May 2021
ISSN: 2472-3452, 2472-34524515.
Alves, Antonio Augusto Alves; others
Hadron cascades in CORSIKA 8
PoS, ICRC2021 :474
20214514.
Teng, Long; Zhao, Weidong
High-order combined multi-step scheme for solving forward backward stochastic differential equations
Journal of Scientific Computing, 87 (3) :1–25
2021
Publisher: Springer New York