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Martin Doskár
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2020 – today
- 2025
[j4]Liya Gaynutdinova
, Martin Doskár
, Ivana Pultarová
, Ondrej Rokos
:
Symmetric positive definite convolutional network for surrogate modeling and optimization of modular structures. Eng. Appl. Artif. Intell. 154: 110906 (2025)
[i11]Fleur Hendriks, Ondrej Rokos, Martin Doskár, Marc G. D. Geers, Vlado Menkovski:
Equivariant Flow Matching for Symmetry-Breaking Bifurcation Problems. CoRR abs/2509.03340 (2025)
[i10]Liya Gaynutdinova, Martin Doskár, Ondrej Rokos, Ivana Pultarová:
Homogenization with Guaranteed Bounds via Primal-Dual Physically Informed Neural Networks. CoRR abs/2509.07579 (2025)
[i9]Liya Gaynutdinova, Petr Havlásek, Ondrej Rokos, Fleur Hendriks, Martin Doskár:
Auto-Regressive U-Net for Full-Field Prediction of Shrinkage-Induced Damage in Concrete. CoRR abs/2509.20507 (2025)- 2024
[i8]Fleur Hendriks, Vlado Menkovski, Martin Doskár, Marc G. D. Geers, Ondrej Rokos:
Similarity Equivariant Graph Neural Networks for Homogenization of Metamaterials. CoRR abs/2404.17365 (2024)
[i7]Ondrej Faltus, Martin Horák, Martin Doskár, Ondrej Rokos:
Third Medium Finite Element Contact Formulation for Pneumatically Actuated Systems. CoRR abs/2405.01185 (2024)- 2021
[i6]Krystof Latka, Martin Doskár, Jan Zeman:
Microstructure reconstruction via artificial neural networks: A combination of causal and non-causal approach. CoRR abs/2110.09815 (2021)
[i5]Tomás Medrický, Martin Doskár, Ivana Pultarová, Jan Zeman:
Comparison of FETI-based domain decomposition methods for topology optimization problems. CoRR abs/2111.11728 (2021)- 2020
[j3]Ondrej Rokos
, Jan Zeman
, Martin Doskár
, Petr Krysl:
Reduced integration schemes in micromorphic computational homogenization of elastomeric mechanical metamaterials. Adv. Model. Simul. Eng. Sci. 7(1): 19 (2020)
[j2]Ondrej Rokos, Jan Zeman, Martin Doskár, Petr Krysl:
Correction to: Reduced integration schemes in micromorphic computational homogenization of elastomeric mechanical metamaterials. Adv. Model. Simul. Eng. Sci. 7(1): 25 (2020)
[j1]Martin Doskár
, Jan Zeman
, Daniel Rypl, Jan Novák:
Level-set Based Design of Wang Tiles for Modelling Complex Microstructures. Comput. Aided Des. 123: 102827 (2020)
[i4]Marek Tyburec, Jan Zeman, Martin Doskár, Martin Kruzík, Matej Leps:
Modular-topology optimization with Wang tilings: An application to truss structures. CoRR abs/2004.07002 (2020)
[i3]S. E. H. M. van Bree, Ondrej Rokos, Ron H. J. Peerlings, Martin Doskár, Marc G. D. Geers:
A Newton Solver for Micromorphic Computational Homogenization Enabling Multiscale Buckling Analysis of Pattern-Transforming Metamaterials. CoRR abs/2008.12850 (2020)
[i2]Martin Doskár, Jan Zeman, Petr Krysl, Jan Novák:
Microstructure-informed reduced modes synthesized with Wang tiles and the Generalized Finite Element Method. CoRR abs/2010.02690 (2020)
2010 – 2019
- 2019
[i1]Martin Doskár, Jan Zeman, Daniel Rypl, Jan Novák:
Level-set based design of Wang tiles for modelling complex microstructures. CoRR abs/1904.07657 (2019)
Coauthor Index

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last updated on 2025-10-19 21:55 CEST by the dblp team
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