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Thomas Göthel
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2010 – 2019
- 2019
- [j6]Marcus Mikulcak, Paula Herber, Thomas Göthel, Sabine Glesner:
Information Flow Analysis of Combined Simulink/Stateflow Models. Inf. Technol. Control. 48(2): 299-315 (2019) - [c27]Tobias F. Pfeffer, Thomas Göthel, Sabine Glesner:
Efficient and Precise Information Flow Control for Machine Code through Demand-Driven Secure Multi-Execution. CODASPY 2019: 197-208 - [c26]Tobias F. Pfeffer, Thomas Göthel, Sabine Glesner:
Automatic Analysis of Critical Sections for Efficient Secure Multi-Execution. QRS 2019: 318-325 - 2018
- [j5]Verena Klös, Thomas Göthel, Sabine Glesner:
Comprehensible and dependable self-learning self-adaptive systems. J. Syst. Archit. 85-86: 28-42 (2018) - [j4]Verena Klös, Thomas Göthel, Sabine Glesner:
Runtime management and quantitative evaluation of changing system goals in complex autonomous systems. J. Syst. Softw. 144: 314-327 (2018) - [c25]Joachim Fellmuth, Thomas Göthel, Sabine Glesner:
Instruction Caches in Static WCET Analysis of Artificially Diversified Software. ECRTS 2018: 21:1-21:23 - [c24]Verena Klös, Thomas Göthel, Sabine Glesner:
Be Prepared: Learning Environment Profiles for Proactive Rule-Based Production Planning. SEAA 2018: 89-96 - [c23]Nils Berg, Thomas Göthel, Armin Danziger, Sabine Glesner:
Preserving Liveness Guarantees from Synchronous Communication to Asynchronous Unstructured Low-Level Languages. ICFEM 2018: 303-319 - [c22]Sebastian Schlesinger, Paula Herber, Thomas Göthel, Sabine Glesner:
Equivalence Checking for Hybrid Control Systems Modelled in Simulink. QRS Companion 2018: 572-579 - [c21]Verena Klös, Thomas Göthel, Sabine Glesner:
Comprehensible Decisions in Complex Self-Adaptive Systems. Software Engineering 2018: 215-216 - [c20]Marcus Mikulcak, Paula Herber, Thomas Göthel, Sabine Glesner:
Information Flow Analysis of Combined Simulink/Stateflow Models. WETICE 2018: 223-228 - 2017
- [c19]Timm Liebrenz, Paula Herber, Thomas Göthel, Sabine Glesner:
Towards Service-Oriented Design of Hybrid Systems Modeled in Simulink. COMPSAC (2) 2017: 469-474 - [c18]Verena Klös, Thomas Göthel, Adrian Lohr, Sabine Glesner:
Runtime Management and Quantitative Evaluation of Changing System Goals. SEAA 2017: 226-233 - [c17]Thomas Göthel, Nils Jähnig, Simon Seif:
Refinement-Based Modelling and Verification of Design Patterns for Self-adaptive Systems. ICFEM 2017: 157-173 - [c16]Verena Klös, Thomas Göthel, Sabine Glesner:
Parameterisation and Optimisation Patterns for MAPE-K Feedback Loops. FAS*W@SASO/ICCAC 2017: 13-18 - 2016
- [c15]Sebastian Schlesinger, Paula Herber, Thomas Göthel, Sabine Glesner:
Proving Correctness of Refactorings for Hybrid Simulink Models with Control Flow. CyPhy 2016: 71-86 - [c14]Marcus Mikulcak, Thomas Göthel, Paula Herber, Sabine Glesner:
Towards Identifying Spurious Paths in Combined Simulink/Stateflow Models. GI-Jahrestagung 2016: 1495-1508 - [c13]Verena Klös, Thomas Göthel, Sabine Glesner:
Formal Models for Analysing Dynamic Adaptation Behaviour in Real-Time Systems. FAS*W@SASO/ICCAC 2016: 106-111 - [c12]Nils Jähnig, Thomas Göthel, Sabine Glesner:
Refinement-Based Verification of Communicating Unstructured Code. SEFM 2016: 61-75 - 2015
- [j3]Thomas Göthel, Verena Klös, Björn Bartels:
Modular Design and Verification of Distributed Adaptive Real-Time Systems Based on Refinements and Abstractions. EAI Endorsed Trans. Self Adapt. Syst. 1(1): e5 (2015) - [c11]Verena Klös, Thomas Göthel, Sabine Glesner:
Adaptive Knowledge Bases in Self-Adaptive System Design. EUROMICRO-SEAA 2015: 472-478 - [c10]Marcus Mikulcak, Paula Herber, Thomas Göthel, Sabine Glesner:
Timed Path Conditions in MATLAB/Simulink. IESS 2015: 64-76 - [c9]Nils Jähnig, Thomas Göthel, Sabine Glesner:
A Denotational Semantics for Communicating Unstructured Code. FESCA 2015: 9-21 - 2014
- [c8]Thomas Göthel, Björn Bartels:
Modular Design and Verification of Distributed Adaptive Real-Time Systems. ICTCC 2014: 3-12 - 2013
- [c7]Thomas Göthel, Sabine Glesner:
Automatic validation of infinite real-time systems. FormaliSE@ICSE 2013: 57-63 - 2012
- [b1]Thomas Göthel:
Mechanical Verification of Parameterized Real-Time Systems. Berlin Institute of Technology, 2012 - [p1]Thomas Göthel:
Maschinelle Verifikation von parametrisierten Echtzeitsystemen. Ausgezeichnete Informatikdissertationen 2012: 121-130 - 2011
- [c6]Moritz Kleine, Björn Bartels, Thomas Göthel, Steffen Helke, Dirk Prenzel:
LLVM2CSP: Extracting CSP Models from Concurrent Programs. NASA Formal Methods 2011: 500-505 - 2010
- [j2]Björn Bartels, Sabine Glesner, Thomas Göthel:
Model Transformations to Mitigate the Semantic Gap in Embedded Systems Verification. Electron. Commun. Eur. Assoc. Softw. Sci. Technol. 30 (2010) - [j1]Thomas Göthel, Sabine Glesner:
An approach for machine-assisted verification of Timed CSP specifications. Innov. Syst. Softw. Eng. 6(3): 181-193 (2010) - [c5]Sabine Glesner, Björn Bartels, Thomas Göthel, Moritz Kleine:
The VATES-Diamond as a Verifier's Best Friend. Verification, Induction, Termination Analysis 2010: 81-101 - [c4]Thomas Göthel, Sabine Glesner:
Towards the Semi-Automatic Verification of Parameterized Real-Time Systems Using Network Invariants. SEFM 2010: 310-314 - [c3]Moritz Kleine, Thomas Göthel:
Specification, Verification and Implementation of Business Processes Using CSP. TASE 2010: 145-154
2000 – 2009
- 2009
- [c2]Thomas Göthel, Sabine Glesner:
Machine-Checkable Timed CSP. NASA Formal Methods 2009: 126-135 - [c1]Moritz Kleine, Björn Bartels, Thomas Göthel, Sabine Glesner:
Verifying the Implementation of an Operating System Scheduler. TASE 2009: 285-286
Coauthor Index
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