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Christopher Gerking
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2020 – today
- 2024
- [j2]Hamideh Hajiabadi, Christopher Gerking, Lennart Hilbert, Anne Koziolek:
A data-driven active learning approach to reusing ML solutions in scientific applications. J. Syst. Softw. 211: 111986 (2024) - [c22]Nicolas Boltz, Larissa Schmid, Bahareh Taghavi, Christopher Gerking, Robert Heinrich:
Modeling and Analyzing Zero Trust Architectures Regarding Performance and Security. ECSA 2024: 253-269 - [c21]Lena Gerlach, Christopher Gerking:
How Do Asynchronous Communication Models Impact the Composability of Information Flow Security? FACS 2024: 127-145 - [c20]Kaan Berk Yaman, Jan Willem Wittler, Christopher Gerking:
Kfeature: Rendering the Kconfig System into Feature Models. VaMoS 2024: 134-138 - [i2]Nicolas Boltz, Sebastian Hahner, Christopher Gerking, Robert Heinrich:
An Extensible Framework for Architecture-Based Data Flow Analysis for Information Security. CoRR abs/2403.09402 (2024) - 2023
- [j1]Nicolas Boltz, Maximilian Walter, Christopher Gerking:
Designing Automotive Case Studies for Architectural Security Analyses. Softwaretechnik-Trends 43(4) (2023) - [c19]Nicolas Boltz, Sebastian Hahner, Christopher Gerking, Robert Heinrich:
An Extensible Framework for Architecture-Based Data Flow Analysis for Information Security. ECSA (Tracks, Workshops and Doctoral Symposium) 2023: 342-358 - [i1]Felix Schwickerath, Nicolas Boltz, Sebastian Hahner, Maximilian Walter, Christopher Gerking, Robert Heinrich:
Tool-Supported Architecture-Based Data Flow Analysis for Confidentiality. CoRR abs/2308.01645 (2023) - 2022
- [c18]Nicolas Boltz, Leonie Sterz, Christopher Gerking, Oliver Raabe:
A Model-Based Framework for Simplified Collaboration of Legal and Software Experts in Data Protection Assessments. GI-Jahrestagung 2022: 521-532 - 2021
- [c17]Christopher Gerking, David Schubert:
Component-Based Refinement and Verification of Information-Flow Security Policies for Cyber-Physical Microservice Architectures. Software Engineering 2021: 43-44 - 2020
- [b1]Christopher Gerking:
Model-driven information flow security engineering for cyber-physical systems. University of Paderborn, Germany, 2020
2010 – 2019
- 2019
- [c16]Christopher Gerking, David Schubert:
Component-Based Refinement and Verification of Information-Flow Security Policies for Cyber-Physical Microservice Architectures. ICSA 2019: 61-70 - [c15]Christopher Gerking, Ingo Budde:
Heuristic Inference of Model Transformation Definitions from Type Mappings. MoDELS (Companion) 2019: 182-188 - 2018
- [c14]Christopher Gerking, David Schubert:
Towards Preserving Information Flow Security on Architectural Composition of Cyber-Physical Systems. ECSA 2018: 147-155 - [c13]Christopher Gerking, David Schubert, Eric Bodden:
Model Checking the Information Flow Security of Real-Time Systems. ESSoS 2018: 27-43 - [c12]Johannes Geismann, Christopher Gerking, Eric Bodden:
Towards ensuring security by design in cyber-physical systems engineering processes. ICSSP 2018: 123-127 - [c11]Christopher Gerking:
Specification of Information Flow Security Policies in Model-Based Systems Engineering. STAF Workshops 2018: 617-632 - 2017
- [c10]Christopher Gerking, David Schubert, Ingo Budde:
Reducing the Verbosity of Imperative Model Refinements by Using General-Purpose Language Facilities. ICMT 2017: 19-34 - [c9]Stefano Schivo, Bugra M. Yildiz, Enno Ruijters, Christopher Gerking, Rajesh Kumar, Stefan Dziwok, Arend Rensink, Mariëlle Stoelinga:
How to Efficiently Build a Front-End Tool for UPPAAL: A Model-Driven Approach. SETTA 2017: 319-336 - 2016
- [c8]David Schubert, Christian Heinzemann, Christopher Gerking:
Towards Safe Execution of Reconfigurations in Cyber-Physical Systems. CBSE 2016: 33-38 - [c7]Christopher Gerking:
Traceability of Information Flow Requirements in Cyber-Physical Systems Engineering. MoDELS (Doctoral Symposium) 2016 - 2015
- [c6]Christopher Gerking, Wilhelm Schäfer, Stefan Dziwok, Christian Heinzemann:
Domain-Specific Model Checking for Cyber-Physical Systems. MoDeVVa@MoDELS 2015: 18-27 - [c5]Christopher Gerking, Jan Ladleif, Wilhelm Schäfer:
Model-driven test case design for model-to-model semantics preservation. A-TEST@SIGSOFT FSE 2015: 1-7 - 2014
- [c4]Uwe Pohlmann, Jörg Holtmann, Matthias Meyer, Christopher Gerking:
Generating Modelica Models from Software Specifications for the Simulation of Cyber-Physical Systems. EUROMICRO-SEAA 2014: 191-198 - [c3]Steffen Becker, Stefan Dziwok, Christopher Gerking, Christian Heinzemann, Wilhelm Schäfer, Matthias Meyer, Uwe Pohlmann:
The MechatronicUML method: model-driven software engineering of self-adaptive mechatronic systems. ICSE Companion 2014: 614-615 - [c2]Stefan Dziwok, Christopher Gerking, Steffen Becker, Sebastian Thiele, Christian Heinzemann, Uwe Pohlmann:
A tool suite for the model-driven software engineering of cyber-physical systems. SIGSOFT FSE 2014: 715-718 - [c1]Christopher Gerking, Christian Heinzemann:
Solving the Movie Database Case with QVTo. TTC@STAF 2014: 98-102
Coauthor Index
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last updated on 2024-10-15 20:42 CEST by the dblp team
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