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Milan Ceska 0002
Person information
- unicode name: Milan Češka Jr.
- affiliation: Brno University of Technology, Department of Intelligent Systems (DITS), Czech Republic
- affiliation: University of Oxford, Department of Computer Science, UK
- affiliation: Masaryk University, Faculty of Informatics, Brno, Czech Republic
- not to be confused with: Milan Ceska 0001
Other persons with the same name
- Milan Ceska 0001 — Brno University of Technology, Department of Intelligent Systems (DITS), Czech Republic
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2020 – today
- 2024
- [d11]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Filip Macák:
Artifact supplement for 'An Oracle-Guided Approach to Constrained Controller Synthesis Under Uncertainty'. Version 1. Zenodo, 2024 [all versions] - [d10]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Filip Macák:
Artifact supplement for 'An Oracle-Guided Approach to Constrained Controller Synthesis Under Uncertainty'. Version 2. Zenodo, 2024 [all versions] - [d9]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Filip Macák:
Artifact supplement for 'An Oracle-Guided Approach to Constrained Controller Synthesis Under Uncertainty'. Version 3. Zenodo, 2024 [all versions] - [i15]Roman Andriushchenko, Alexander Bork, Carlos E. Budde, Milan Ceska, Kush Grover, Ernst Moritz Hahn, Arnd Hartmanns, Bryant Israelsen, Nils Jansen, Joshua Jeppson, Sebastian Junges, Maximilian A. Köhl, Bettina Könighofer, Jan Kretínský, Tobias Meggendorfer, David Parker, Stefan Pranger, Tim Quatmann, Enno Ruijters, Landon Taylor, Matthias Volk, Maximilian Weininger, Zhen Zhang:
Tools at the Frontiers of Quantitative Verification. CoRR abs/2405.13583 (2024) - [i14]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Filip Macák:
Policies Grow on Trees: Model Checking Families of MDPs. CoRR abs/2407.12552 (2024) - 2023
- [c43]Roman Andriushchenko, Alexander Bork, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Filip Macák:
Search and Explore: Symbiotic Policy Synthesis in POMDPs. CAV (3) 2023: 113-135 - [c42]Roman Andriushchenko, Ezio Bartocci, Milan Ceska, Francesco Pontiggia, Sarah Sallinger:
Deductive Controller Synthesis for Probabilistic Hyperproperties. QEST 2023: 288-306 - [d8]Roman Andriushchenko, Alexander Bork, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Filip Macák:
Artifact supplement for 'Search and Explore: Symbiotic Policy Synthesis in POMDPs'. Version 0.3. Zenodo, 2023 [all versions] - [d7]Roman Andriushchenko, Alexander Bork, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Filip Macák:
Artifact supplement for 'Search and Explore: Symbiotic Policy Synthesis in POMDPs'. Version 0.4. Zenodo, 2023 [all versions] - [d6]Roman Andriushchenko, Alexander Bork, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Filip Macák:
Artifact supplement for 'Search and Explore: Symbiotic Policy Synthesis in POMDPs'. Version 0.5. Zenodo, 2023 [all versions] - [d5]Roman Andriushchenko, Ezio Bartocci, Milan Ceska, Francesco Pontiggia, Sarah Sallinger:
Artifact supplement for "Deductive Controller Synthesis for Probabilistic Hyperproperties". Zenodo, 2023 - [d4]Roman Andriushchenko, Ezio Bartocci, Milan Ceska, Francesco Pontiggia, Sarah Sallinger:
Artifact supplement for "Deductive Controller Synthesis for Probabilistic Hyperproperties". Zenodo, 2023 - [d3]Roman Andriushchenko, Ezio Bartocci, Milan Ceska, Francesco Pontiggia, Sarah Sallinger:
Artifact supplement for "Deductive Controller Synthesis for Probabilistic Hyperproperties". Zenodo, 2023 - [d2]Roman Andriushchenko, Ezio Bartocci, Milan Ceska, Francesco Pontiggia, Sarah Sallinger:
Artifact supplement for "Deductive Controller Synthesis for Probabilistic Hyperproperties". Zenodo, 2023 - [i13]Roman Andriushchenko, Alexander Bork, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Filip Macák:
Search and Explore: Symbiotic Policy Synthesis in POMDPs. CoRR abs/2305.14149 (2023) - [i12]Roman Andriushchenko, Ezio Bartocci, Milan Ceska, Francesco Pontiggia, Sarah Sallinger:
Deductive Controller Synthesis for Probabilistic Hyperproperties. CoRR abs/2307.04503 (2023) - 2022
- [j9]Milan Ceska, Jirí Matyás, Vojtech Mrazek, Lukás Sekanina, Zdenek Vasícek, Tomás Vojnar:
SagTree: Towards efficient mutation in evolutionary circuit approximation. Swarm Evol. Comput. 69: 100986 (2022) - [c41]Martin Helfrich, Milan Ceska, Jan Kretínský, Stefan Marticek:
Abstraction-Based Segmental Simulation of Chemical Reaction Networks. CMSB 2022: 41-60 - [c40]Roman Andriushchenko, Milan Ceska, Vladimír Marcin, Tomás Vojnar:
GPU-Accelerated Synthesis of Probabilistic Programs. EUROCAST 2022: 258-266 - [c39]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen:
Inductive synthesis of finite-state controllers for POMDPs. UAI 2022: 85-95 - [d1]Martin Helfrich, Milan Ceska, Jan Kretínský, Stefan Marticek:
Artifact for CMSB22 paper "Abstraction-Based Segmental Simulation of Chemical Reaction Networks". Zenodo, 2022 - [i11]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen:
Inductive Synthesis of Finite-State Controllers for POMDPs. CoRR abs/2203.10803 (2022) - [i10]Martin Helfrich, Milan Ceska, Jan Kretínský, Stefan Marticek:
Abstraction-Based Segmental Simulation of Chemical Reaction Networks. CoRR abs/2206.06677 (2022) - [i9]Milan Ceska, Jirí Matyás, Vojtech Mrazek, Tomás Vojnar:
Designing Approximate Arithmetic Circuits with Combined Error Constraints. CoRR abs/2206.13077 (2022) - 2021
- [j8]Milan Ceska, Christian Hensel, Sebastian Junges, Joost-Pieter Katoen:
Counterexample-guided inductive synthesis for probabilistic systems. Formal Aspects Comput. 33(4-5): 637-667 (2021) - [j7]Alessandro Abate, Roman Andriushchenko, Milan Ceska, Marta Kwiatkowska:
Adaptive formal approximations of Markov chains. Perform. Evaluation 148: 102207 (2021) - [c38]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen, Simon Stupinský:
PAYNT: A Tool for Inductive Synthesis of Probabilistic Programs. CAV (1) 2021: 856-869 - [c37]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen:
Inductive Synthesis for Probabilistic Programs Reaches New Horizons. TACAS (1) 2021: 191-209 - [i8]Roman Andriushchenko, Milan Ceska, Sebastian Junges, Joost-Pieter Katoen:
Inductive Synthesis for Probabilistic Programs Reaches New Horizons. CoRR abs/2101.12683 (2021) - [i7]Milan Ceska, Christian Dehnert, Nils Jansen, Sebastian Junges, Joost-Pieter Katoen:
Model Repair Revamped: On the Automated Synthesis of Markov Chains. CoRR abs/2105.13411 (2021) - 2020
- [j6]Milan Ceska, Jirí Matyás, Vojtech Mrazek, Lukás Sekanina, Zdenek Vasícek, Tomás Vojnar:
Adaptive verifiability-driven strategy for evolutionary approximation of arithmetic circuits. Appl. Soft Comput. 95: 106466 (2020) - [j5]Milan Ceska, Vojtech Havlena, Lukás Holík, Ondrej Lengál, Tomás Vojnar:
Approximate reduction of finite automata for high-speed network intrusion detection. Int. J. Softw. Tools Technol. Transf. 22(5): 523-539 (2020) - [c36]Milan Ceska, Calvin Chau, Jan Kretínský:
SeQuaiA: A Scalable Tool for Semi-Quantitative Analysis of Chemical Reaction Networks. CAV (1) 2020: 653-666 - [c35]Milan Ceska, Jirí Matyás, Vojtech Mrazek, Tomás Vojnar:
Satisfiability Solving Meets Evolutionary Optimisation in Designing Approximate Circuits. SAT 2020: 481-491 - [i6]Milan Ceska, Jirí Matyás, Vojtech Mrazek, Lukás Sekanina, Zdenek Vasícek, Tomás Vojnar:
Adaptive Verifiability-Driven Strategy for Evolutionary Approximation of Arithmetic Circuits. CoRR abs/2003.02491 (2020)
2010 – 2019
- 2019
- [c34]Milan Ceska, Christian Dehnert, Nils Jansen, Sebastian Junges, Joost-Pieter Katoen:
Model Repair Revamped - - On the Automated Synthesis of Markov Chains -. From Reactive Systems to Cyber-Physical Systems 2019: 107-125 - [c33]Milan Ceska, Jan Kretínský:
Semi-quantitative Abstraction and Analysis of Chemical Reaction Networks. CAV (1) 2019: 475-496 - [c32]Milan Ceska, Jan Kretínský:
Semi-quantitative Abstraction and Analysis of Chemical Reaction Networks (Extended Abstract). CMSB 2019: 337-341 - [c31]Milan Ceska Jr., Milan Ceska, Jirí Matyás, Adam Pankuch, Tomás Vojnar:
Approximating Complex Arithmetic Circuits with Guaranteed Worst-Case Relative Error. EUROCAST (1) 2019: 482-490 - [c30]Milan Ceska, Vojtech Havlena, Lukás Holík, Jan Korenek, Ondrej Lengál, Denis Matousek, Jirí Matousek, Jakub Semric, Tomás Vojnar:
Deep Packet Inspection in FPGAs via Approximate Nondeterministic Automata. FCCM 2019: 109-117 - [c29]Milan Ceska, Christian Hensel, Sebastian Junges, Joost-Pieter Katoen:
Counterexample-Driven Synthesis for Probabilistic Program Sketches. FM 2019: 101-120 - [c28]Milan Ceska, Nils Jansen, Sebastian Junges, Joost-Pieter Katoen:
Shepherding Hordes of Markov Chains. TACAS (2) 2019: 172-190 - [e3]Milan Ceska, Nicola Paoletti:
Hybrid Systems Biology - 6th International Workshop, HSB 2019, Prague, Czech Republic, April 6-7, 2019, Revised Selected Papers. Lecture Notes in Computer Science 11705, Springer 2019, ISBN 978-3-030-28041-3 [contents] - [i5]Milan Ceska, Nils Jansen, Sebastian Junges, Joost-Pieter Katoen:
Shepherding Hordes of Markov Chains. CoRR abs/1902.05727 (2019) - [i4]Milan Ceska, Christian Hensel, Sebastian Junges, Joost-Pieter Katoen:
Counterexample-Driven Synthesis for Probabilistic Program Sketches. CoRR abs/1904.12371 (2019) - [i3]Milan Ceska, Jan Kretínský:
Semi-Quantitative Abstraction and Analysis of Chemical Reaction Networks. CoRR abs/1905.09914 (2019) - 2018
- [j4]Radu Calinescu, Milan Ceska, Simos Gerasimou, Marta Kwiatkowska, Nicola Paoletti:
Efficient synthesis of robust models for stochastic systems. J. Syst. Softw. 143: 140-158 (2018) - [j3]Radu Calinescu, Milan Ceska, Simos Gerasimou, Marta Kwiatkowska, Nicola Paoletti:
Erratum to "Efficient synthesis of robust models for stochastic systems" [The Journal of Systems & Software 143 (2018) 140-158]. J. Syst. Softw. 145: 195 (2018) - [c27]Milan Ceska, Jirí Matyás, Vojtech Mrazek, Lukás Sekanina, Zdenek Vasícek, Tomás Vojnar:
ADAC: Automated Design of Approximate Circuits. CAV (1) 2018: 612-620 - [c26]Milan Ceska, Vojtech Havlena, Lukás Holík, Ondrej Lengál, Tomás Vojnar:
Approximate Reduction of Finite Automata for High-Speed Network Intrusion Detection. TACAS (2) 2018: 155-175 - [e2]Milan Ceska, David Safránek:
Computational Methods in Systems Biology - 16th International Conference, CMSB 2018, Brno, Czech Republic, September 12-14, 2018, Proceedings. Lecture Notes in Computer Science 11095, Springer 2018, ISBN 978-3-319-99428-4 [contents] - 2017
- [j2]Milan Ceska, Frits Dannenberg, Nicola Paoletti, Marta Kwiatkowska, Lubos Brim:
Precise parameter synthesis for stochastic biochemical systems. Acta Informatica 54(6): 589-623 (2017) - [c25]Luca Cardelli, Milan Ceska, Martin Fränzle, Marta Z. Kwiatkowska, Luca Laurenti, Nicola Paoletti, Max Whitby:
Syntax-Guided Optimal Synthesis for Chemical Reaction Networks. CAV (2) 2017: 375-395 - [c24]Milan Ceska Jr., Milan Ceska, Nicola Paoletti:
Precise Parameter Synthesis for Generalised Stochastic Petri Nets with Interval Parameters. EUROCAST (2) 2017: 38-46 - [c23]Luca Laurenti, Alessandro Abate, Luca Bortolussi, Luca Cardelli, Milan Ceska, Marta Z. Kwiatkowska:
Reachability Computation for Switching Diffusions: Finite Abstractions with Certifiable and Tuneable Precision. HSCC 2017: 55-64 - [c22]Milan Ceska, Jirí Matyás, Vojtech Mrazek, Lukás Sekanina, Zdenek Vasícek, Tomás Vojnar:
Approximating complex arithmetic circuits with formal error guarantees: 32-bit multipliers accomplished. ICCAD 2017: 416-423 - [c21]Radu Calinescu, Milan Ceska, Simos Gerasimou, Marta Kwiatkowska, Nicola Paoletti:
Designing Robust Software Systems through Parametric Markov Chain Synthesis. ICSA 2017: 131-140 - [c20]Radu Calinescu, Milan Ceska, Simos Gerasimou, Marta Kwiatkowska, Nicola Paoletti:
RODES: A Robust-Design Synthesis Tool for Probabilistic Systems. QEST 2017: 304-308 - [i2]Milan Ceska, Vojtech Havlena, Lukás Holík, Ondrej Lengál, Tomás Vojnar:
Approximate Reduction of Finite Automata for High-Speed Network Intrusion Detection. CoRR abs/1710.08647 (2017) - 2016
- [c19]Alessandro Abate, Milan Ceska, Marta Kwiatkowska:
Approximate Policy Iteration for Markov Decision Processes via Quantitative Adaptive Aggregations. ATVA 2016: 13-31 - [c18]Stefano Aldegheri, Jiri Barnat, Nicola Bombieri, Federico Busato, Milan Ceska:
Parametric Multi-step Scheme for GPU-Accelerated Graph Decomposition into Strongly Connected Components. Euro-Par Workshops 2016: 519-531 - [c17]Milan Ceska, Petr Pilar, Nicola Paoletti, Lubos Brim, Marta Z. Kwiatkowska:
PRISM-PSY: Precise GPU-Accelerated Parameter Synthesis for Stochastic Systems. TACAS 2016: 367-384 - 2015
- [c16]Alessandro Abate, Lubos Brim, Milan Ceska, Marta Z. Kwiatkowska:
Adaptive Aggregation of Markov Chains: Quantitative Analysis of Chemical Reaction Networks. CAV (1) 2015: 195-213 - [c15]Lubos Brim, Milan Ceska, Martin Demko, Samuel Pastva, David Safránek:
Parameter Synthesis by Parallel Coloured CTL Model Checking. CMSB 2015: 251-263 - 2014
- [c14]Milan Ceska, Frits Dannenberg, Marta Z. Kwiatkowska, Nicola Paoletti:
Precise Parameter Synthesis for Stochastic Biochemical Systems. CMSB 2014: 86-98 - 2013
- [c13]Lubos Brim, Milan Ceska, Sven Drazan, David Safránek:
Exploring Parameter Space of Stochastic Biochemical Systems Using Quantitative Model Checking. CAV 2013: 107-123 - [c12]Lubos Brim, Milan Ceska, David Safránek:
Model Checking of Biological Systems. SFM 2013: 63-112 - [i1]Lubos Brim, Milan Ceska, Sven Drazan, David Safránek:
On Robustness Analysis of Stochastic Biochemical Systems by Probabilistic Model Checking. CoRR abs/1310.4734 (2013) - 2012
- [j1]Jiri Barnat, Petr Bauch, Lubos Brim, Milan Ceska:
Designing fast LTL model checking algorithms for many-core GPUs. J. Parallel Distributed Comput. 72(9): 1083-1097 (2012) - [c11]Alexander Ditter, Milan Ceska, Gerald Lüttgen:
On Parallel Software Verification Using Boolean Equation Systems. SPIN 2012: 80-97 - 2011
- [c10]Jiri Barnat, Petr Bauch, Lubos Brim, Milan Ceska:
Computing Strongly Connected Components in Parallel on CUDA. IPDPS 2011: 544-555 - [c9]Jiri Barnat, Petr Bauch, Lubos Brim, Milan Ceska:
Computing Optimal Cycle Mean in Parallel on CUDA. PDMC 2011: 68-83 - 2010
- [c8]Jiri Barnat, Petr Bauch, Lubos Brim, Milan Ceska:
Employing Multiple CUDA Devices to Accelerate LTL Model Checking. ICPADS 2010: 259-266 - [c7]Petr Bauch, Milan Ceska:
CUDA Accelerated LTL Model Checking - Revisited. MEMICS 2010: 1-8
2000 – 2009
- 2009
- [c6]Jiri Barnat, Lubos Brim, Milan Ceska, Tomas Lamr:
CUDA Accelerated LTL Model Checking. ICPADS 2009: 34-41 - [c5]Jiri Barnat, Lubos Brim, Milan Ceska:
DiVinE-CUDA - A Tool for GPU Accelerated LTL Model Checking. PDMC 2009: 107-111 - [e1]Milan Ceska, Zdenek Kotásek, Mojmír Kretínský, Ludek Matyska, Tomás Vojnar:
Proceedings of the International Doctoral Workshop on Mathematical and Engineering Methods in Computer Science, MEMICS 2008, Znojmo, Czech Republic, November 14-16, 2008. Electronic Notes in Theoretical Computer Science 251, Elsevier 2009 [contents] - 2008
- [c4]Jiri Barnat, Lubos Brim, Ivana Cerná, Milan Ceska, Jana Tumova:
Local Quantitative LTL Model Checking. FMICS 2008: 53-68 - [c3]Jiri Barnat, Lubos Brim, Ivana Cerná, Milan Ceska, Jana Tumova:
ProbDiVinE-MC: Multi-core LTL Model Checker for Probabilistic Systems. QEST 2008: 77-78 - [c2]Milan Ceska, Zdenek Kotásek, Mojmír Kretínský, Ludek Matyska, Tomás Vojnar:
Preface. MEMICS 2008: 1-3 - 2007
- [c1]Jiri Barnat, Lubos Brim, Ivana Cerná, Milan Ceska, Jana Tumova:
ProbDiVinE: A Parallel Qualitative LTL Model Checker. QEST 2007: 215-216
Coauthor Index
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last updated on 2024-11-08 20:34 CET by the dblp team
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