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Michal Konecný
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2020 – today
- 2024
- [j8]Sewon Park, Franz Brauße, Pieter Collins, SunYoung Kim, Michal Konecný, Gyesik Lee, Norbert Th. Müller, Eike Neumann, Norbert Preining, Martin Ziegler:
Semantics, Specification Logic, and Hoare Logic of Exact Real Computation. Log. Methods Comput. Sci. 20(2) (2024) - [i6]Michal Konecný, Sewon Park, Holger Thies:
Formalizing Hyperspaces and Operations on Subsets of Polish spaces over Abstract Exact Real Numbers. CoRR abs/2410.13508 (2024) - 2023
- [c14]Michal Konecný, Sewon Park, Holger Thies:
Formalizing Hyperspaces for Extracting Efficient Exact Real Computation. MFCS 2023: 59:1-59:16 - 2022
- [c13]Michal Konecný, Sewon Park, Holger Thies:
Certified Computation of Nondeterministic Limits. NFM 2022: 771-789 - [c12]Junaid Rasheed, Michal Konecný:
Auto-Active Verification of Floating-Point Programs via Nonlinear Real Provers. SEFM 2022: 20-36 - [i5]Michal Konecný, Sewon Park, Holger Thies:
Extracting efficient exact real number computation from proofs in constructive type theory. CoRR abs/2202.00891 (2022) - [i4]Junaid Rasheed, Michal Konecný:
Auto-active Verification of Floating-point Programs via Nonlinear Real Provers. CoRR abs/2207.00921 (2022) - 2021
- [j7]Michal Konecný, Eike Neumann:
Representations and evaluation strategies for feasibly approximable functions. Comput. 10(1): 63-89 (2021) - [c11]Michal Konecný, Sewon Park, Holger Thies:
Axiomatic Reals and Certified Efficient Exact Real Computation. WoLLIC 2021: 252-268 - 2020
- [c10]Michal Konecný, Florian Steinberg, Holger Thies:
Computable Analysis for Verified Exact Real Computation. FSTTCS 2020: 50:1-50:18 - [c9]Michal Konecný, Florian Steinberg, Holger Thies:
Continuous and Monotone Machines. MFCS 2020: 56:1-56:16 - [i3]Michal Konecný, Florian Steinberg, Holger Thies:
Continuous and monotone machines. CoRR abs/2005.01624 (2020)
2010 – 2019
- 2019
- [i2]Michal Konecný, Eike Neumann:
Implementing evaluation strategies for continuous real functions. CoRR abs/1910.04891 (2019) - 2017
- [i1]Michal Konecný, Eike Neumann:
Representations and evaluation strategies for feasibly approximable functions. CoRR abs/1710.03702 (2017) - 2015
- [c8]Walid Taha, Adam Duracz, Yingfu Zeng, Kevin Atkinson, Ferenc A. Bartha, Paul Brauner, Jan Duracz, Fei Xu, Robert Cartwright, Michal Konecný, Eugenio Moggi, Jawad Masood, Pererik Andreasson, Jun Inoue, Anita Pinheiro Sant'Anna, Roland Philippsen, Alexandre Chapoutot, Marcia O'Malley, Aaron D. Ames, Verónica Gaspes, Lise Hvatum, Shyam Mehta, Henrik Eriksson, Christian Grante:
Acumen: An Open-Source Testbed for Cyber-Physical Systems Research. IoT 360 (1) 2015: 118-130 - [c7]Khalil Al Ruqeishi, Michal Konecný:
Regrouping Metric-Space Search Index for Search Engine Size Adaptation. SISAP 2015: 271-282 - 2014
- [j6]Jan Duracz, Michal Konecný:
Polynomial function intervals for floating-point software verification. Ann. Math. Artif. Intell. 70(4): 351-398 (2014) - [c6]Jan Duracz, Amin Farjudian, Michal Konecný, Walid Taha:
Function Interval Arithmetic. ICMS 2014: 677-684 - 2013
- [c5]Michal Konecný, Walid Taha, Jan Duracz, Adam Duracz, Aaron D. Ames:
Enclosing the behavior of a hybrid system up to and beyond a Zeno point. CPSNA 2013: 120-125 - 2011
- [c4]Zoltán Balogh, Emil Gatial, Ladislav Hluchý, Vlasta Hudek, Michal Konecný:
Integration of secure agents with a secure communication infrastructure for crisis management. CTS 2011: 367-372 - 2010
- [j5]Michal Konecný, Amin Farjudian:
Semantics of Query-Driven Communication of Exact Values. J. Univers. Comput. Sci. 16(18): 2597-2628 (2010) - [j4]Michal Konecný, Amin Farjudian:
Compositional Semantics of Dataflow Networks with Query-Driven Communication of Exact Values. J. Univers. Comput. Sci. 16(18): 2629-2656 (2010)
2000 – 2009
- 2008
- [j3]David Aspinall, Martin Hofmann, Michal Konecný:
A type system with usage aspects. J. Funct. Program. 18(2): 141-178 (2008) - [c3]Amin Farjudian, Michal Konecný:
Time Complexity and Convergence Analysis of Domain Theoretic Picard Method. WoLLIC 2008: 149-163 - 2004
- [j2]Michal Konecný:
Real functions incrementally computable by finite automata. Theor. Comput. Sci. 315(1): 109-133 (2004) - 2003
- [c2]Michal Konecný:
Functional In-Place Update with Layered Datatype Sharing. TLCA 2003: 195-210 - 2002
- [j1]Michal Konecný:
Real functions computable by finite automata using affine representations. Theor. Comput. Sci. 284(2): 373-396 (2002) - [c1]Michal Konecný:
Typing with Conditions and Guarantees for Functional In-place Update. TYPES 2002: 182-199
Coauthor Index
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