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Maximilian Walter
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Books and Theses
- 2024
- [b1]Maximilian Walter:
Context-based Access Control and Attack Modelling and Analysis. Karlsruhe Institute of Technology, Germany, 2024
Journal Articles
- 2023
- [j5]Maximilian Walter, Sebastian Hahner, Tomás Bures, Petr Hnetynka, Robert Heinrich, Ralf H. Reussner:
Architecture-based attack propagation and variation analysis for identifying confidentiality issues in Industry 4.0. Autom. 71(6): 443-452 (2023) - [j4]Nicolas Boltz, Maximilian Walter, Christopher Gerking:
Designing Automotive Case Studies for Architectural Security Analyses. Softwaretechnik-Trends 43(4) (2023) - [j3]Tomás Bures, Petr Hnetynka, Martin Krulis, Frantisek Plásil, Danylo Khalyeyev, Sebastian Hahner, Stephan Seifermann, Maximilian Walter, Robert Heinrich:
Generating adaptation rule-specific neural networks. Int. J. Softw. Tools Technol. Transf. 25(5): 733-746 (2023) - 2020
- [j2]Maximilian Walter, Stephan Seifermann, Robert Heinrich:
A Taxonomy of Dynamic Changes Affecting Confidentiality. Softwaretechnik-Trends 40(2): 35-36 (2020) - [j1]Malte Reimann, Stephan Seifermann, Maximilian Walter, Robert Heinrich, Tomás Bures, Petr Hnetynka:
Towards Language-Agnostic Reuse of Palladio Quality Analyses. Softwaretechnik-Trends 40(3): 46-48 (2020)
Conference and Workshop Papers
- 2024
- [c21]Sebastian Hahner, Maximilian Walter, Robert Heinrich, Ralf H. Reussner:
Architecture-based Propagation Analyses Regarding Security. Software Engineering 2024: 121-122 - 2023
- [c20]Maximilian Walter, Robert Heinrich, Ralf H. Reussner:
Architecture-Based Attack Path Analysis for Identifying Potential Security Incidents. ECSA 2023: 37-53 - [c19]Sebastian Hahner, Tizian Bitschi, Maximilian Walter, Tomás Bures, Petr Hnetynka, Robert Heinrich:
Model-based Confidentiality Analysis under Uncertainty. ICSA-C 2023: 256-263 - [c18]Yves Richard Kirschner, Maximilian Walter, Florian Bossert, Robert Heinrich, Anne Koziolek:
Automatic Derivation of Vulnerability Models for Software Architectures. ICSA-C 2023: 276-283 - [c17]Maximilian Walter, Robert Heinrich, Ralf H. Reussner:
Identifizierung von Vertraulichkeitsproblemen mithilfe von Angriffsausbreitung auf Architektur. Software Engineering 2023: 123-124 - 2022
- [c16]Maximilian Walter, Ralf H. Reussner:
Tool-Based Attack Graph Estimation and Scenario Analysis for Software Architectures. ECSA (Tracks and Workshops) 2022: 45-61 - [c15]Nicolas Boltz, Sebastian Hahner, Maximilian Walter, Stephan Seifermann, Robert Heinrich, Tomás Bures, Petr Hnetynka:
Handling Environmental Uncertainty in Design Time Access Control Analysis. SEAA 2022: 382-389 - [c14]Maximilian Walter, Robert Heinrich, Ralf H. Reussner:
Architectural Attack Propagation Analysis for Identifying Confidentiality Issues. ICSA 2022: 1-12 - [c13]Maximilian Walter, Robert Heinrich, Ralf H. Reussner:
Dataset - Architectural Attack Propagation Analysis for Identifying Confidentiality Issues. ICSA Companion 2022: 59 - [c12]Tomás Bures, Petr Hnetynka, Martin Krulis, Frantisek Plásil, Danylo Khalyeyev, Sebastian Hahner, Stephan Seifermann, Maximilian Walter, Robert Heinrich:
Attuning Adaptation Rules via a Rule-Specific Neural Network. ISoLA (3) 2022: 215-230 - 2021
- [c11]Angelika Kaplan, Maximilian Walter, Robert Heinrich:
A Classification for Managing Software Engineering Knowledge. EASE 2021: 340-346 - [c10]Stephan Seifermann, Maximilian Walter, Sebastian Hahner, Robert Heinrich, Ralf H. Reussner:
Identifying Confidentiality Violations in Architectural Design Using Palladio (short paper). ECSA (Companion) 2021 - [c9]Maximilian Walter, Sebastian Hahner, Stephan Seifermann, Tomás Bures, Petr Hnetynka, Jan Pacovský, Robert Heinrich:
Architectural Optimization for Confidentiality Under Structural Uncertainty. ECSA (Tracks and Workshops) 2021: 309-332 - [c8]Tomás Bures, Ilias Gerostathopoulos, Petr Hnetynka, Stephan Seifermann, Maximilian Walter, Robert Heinrich:
Aspect-Oriented Adaptation of Access Control Rules. SEAA 2021: 363-370 - [c7]Sebastian Hahner, Stephan Seifermann, Robert Heinrich, Maximilian Walter, Tomás Bures, Petr Hnetynka:
Modeling Data Flow Constraints for Design-Time Confidentiality Analyses. ICSA Companion 2021: 15-21 - 2020
- [c6]Nicolas Boltz, Maximilian Walter, Robert Heinrich:
Context-Based Confidentiality Analysis for Industrial IoT. SEAA 2020: 589-596 - [c5]Tomás Bures, Petr Hnetynka, Robert Heinrich, Stephan Seifermann, Maximilian Walter:
Capturing Dynamicity and Uncertainty in Security and Trust via Situational Patterns. ISoLA (2) 2020: 295-310 - [c4]Angelika Kaplan, Jan Keim, Yves Schneider, Maximilian Walter, Dominik Werle, Anne Koziolek, Ralf H. Reussner:
Teaching Programming at Scale. SEUH 2020: 2-6 - 2019
- [c3]Rima Al Ali, Petr Hnetynka, Jiri Havlik, Vlastimil Krivka, Robert Heinrich, Stephan Seifermann, Maximilian Walter, Adrian Juan Verdejo:
Dynamic security rules for legacy systems. ECSA (Companion) 2019: 277-284 - [c2]Stephan Seifermann, Maximilian Walter:
Evolving a Use Case for Industry 4.0 Environments Towards Integration of Physical Access Control. Software Engineering (Workshops) 2019: 106-108 - 2018
- [c1]Rima Al Ali, Robert Heinrich, Petr Hnetynka, Adrian Juan Verdejo, Stephan Seifermann, Maximilian Walter:
Modeling of dynamic trust contracts for industry 4.0 systems. ECSA (Companion) 2018: 45:1-45:4
Parts in Books or Collections
- 2022
- [p1]Robert Heinrich, Stephan Seifermann, Maximilian Walter, Sebastian Hahner, Ralf H. Reussner, Tomás Bures, Petr Hnetynka, Jan Pacovský:
Dynamic Access Control in Industry 4.0 Systems. Digital Transformation 2022: 143-170
Informal and Other Publications
- 2023
- [i2]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) - 2021
- [i1]Tomás Bures, Petr Hnetynka, Martin Krulis, Danylo Khalyeyev, Sebastian Hahner, Stephan Seifermann, Maximilian Walter, Robert Heinrich:
Towards fuzzification of adaptation rules in self-adaptive architectures. CoRR abs/2112.09468 (2021)
Coauthor Index
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last updated on 2024-10-15 21:39 CEST by the dblp team
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