, The editor would like to thank the editorial board and the following colleagues for reviewing papers., Disability and Rehabilitation, vol.27, issue.24, pp.1521-1523, 2005.

Z. Alshaikh and C. Boughton, The Context Dynamics Matrix (CDM): An Approach to Modeling Context, 2009 16th Asia-Pacific Software Engineering Conference, pp.101-108, 2009.

A. Armand, D. Filliat, and J. Ibanez-guzman, Ontology-based context awareness for driving assistance systems, 2014 IEEE Intelligent Vehicles Symposium Proceedings, pp.227-233, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01012078

J. Bach, S. Otten, and E. Sax, Model based scenario specification for development and test of automated driving functions, 2016 IEEE Intelligent Vehicles Symposium (IV), pp.1149-1155, 2016.

G. Bagschik, T. Menzel, and M. Maurer, Ontology based Scene Creation for the Development of Automated Vehicles, 2018 IEEE Intelligent Vehicles Symposium (IV), pp.1813-1820, 2018.

M. Baldauf, S. Dustdar, and F. Rosenberg, A survey on context-aware systems, International Journal of Ad Hoc and Ubiquitous Computing, vol.2, issue.4, p.263, 2007.

F. Bock, C. Sippl, A. Heinzz, C. Lauerz, and R. German, Advantageous Usage of Textual Domain-Specific Languages for Scenario-Driven Development of Automated Driving Functions, 2019 IEEE International Systems Conference (SysCon), pp.1-8, 2019.

P. J. Brown, The stick-e document: a framework for creating context-aware applications, pp.259-272, 1995.

F. Bubl and M. Balser, Tracing Cross-Cutting Requirements via Context-Based Constraints, Ninth European Conference on Software Maintenance and Reengineering, pp.80-90

F. Bubl and M. Balser, Tracing Cross-Cutting Requirements via Context-Based Constraints, Ninth European Conference on Software Maintenance and Reengineering

O. Cabrera, X. Franch, and J. Marco, Ontology-based context modeling in service-oriented computing: A systematic mapping, Data & Knowledge Engineering, vol.110, pp.24-53, 2017.

H. Chen, T. Finin, and A. Joshi, An ontology for context-aware pervasive computing environments, The Knowledge Engineering Review, vol.18, issue.3, pp.197-207, 2003.

W. Chen, C. Hoyle, and H. J. Wassenaar, A Choice Modeling Approach for Usage Context-Based Design, Decision-Based Design, pp.255-285, 2012.

J. L. Crowley, J. Coutaz, G. Rey, and P. Reignier, Perceptual Components for Context Aware Computing, UbiComp 2002: Ubiquitous Computing, pp.117-134, 2002.
URL : https://hal.archives-ouvertes.fr/hal-02290180

O. De-weck, C. Eckert, and P. J. Clarkson, Guest editorial, Research in Engineering Design, vol.23, issue.4, pp.265-267, 2012.

A. K. Dey, Understanding and Using Context, Personal and Ubiquitous Computing, vol.5, issue.1, pp.4-7, 2001.

S. Fuchs, S. Rass, and K. Kyamakya, Integration of Ontological Scene Representation and Logic-Based Reasoning for Context-Aware Driver Assistance Systems, Contextaware Adaption Mechanisms for Pervasive and Ubiquitous Services, vol.11, 2008.

S. Fuchs, S. Rass, B. Lamprecht, and K. Kyamakya, A Model for Ontology-Based Scene Description for Context-Aware Driver Assistance Systems, Proceedings of the First International Conference on Ambient Media and Systems, p.5, 2008.

S. Geyer, M. Kienle, B. Franz, H. Winner, K. Bengler et al., Concept and development of a unified ontology for generating test and use-case catalogues for assisted and automated vehicle guidance, IET Intelligent Transport Systems, vol.8, issue.3, pp.183-189, 2014.

B. Glimm, I. Horrocks, B. Motik, G. Stoilos, and Z. Wang, HermiT: An OWL 2 Reasoner, Journal of Automated Reasoning, vol.53, issue.3, pp.245-269, 2014.

B. Glimm, I. Horrocks, B. Motik, G. Stoilos, and Z. Wang, HermiT: An OWL 2 Reasoner, Journal of Automated Reasoning, vol.53, issue.3, pp.245-269, 2014.

I. Handbook, INCOSE Systems Engineering Handbook: A Guide for System Life Cycle Processes and Activities, Version 4. International Council on Systems Engineering, 2014.

K. Henricksen and J. Indulska, A software engineering framework for context-aware pervasive computing, Second IEEE Annual Conference on Pervasive Computing and Communications, 2004. Proceedings of the, 2004.

A. Höfer and M. Herrmann, Scenario-based approach for developing ADAS and automated driving functions, Proceedings, pp.215-225, 2017.

M. Horridge, N. Drummond, J. Goodwin, A. Rector, and H. H. Wang, The manchester owl syntax. Presented at the In, Proc. of the 2006 OWL Experiences and Directions Workshop (OWL-ED2006), 2006.

I. Horváth, What the Design Theory of Social-Cyber-Physical Systems Must Describe, Explain and Predict?, An Anthology of Theories and Models of Design, pp.99-120, 2014.

R. Hull, P. Neaves, and J. Bedford-roberts, Towards situated computing, Digest of Papers. First International Symposium on Wearable Computers, pp.146-153

S. Jesenski, J. E. Stellet, F. Schiegg, and J. M. Zollner, Generation of Scenes in Intersections for the Validation of Highly Automated Driving Functions, 2019 IEEE Intelligent Vehicles Symposium (IV), pp.502-509, 2019.

S. Jesenski, J. E. Stellet, F. Schiegg, and J. M. Zollner, Generation of Scenes in Intersections for the Validation of Highly Automated Driving Functions, 2019 IEEE Intelligent Vehicles Symposium (IV), 2019.

A. Khattak, N. Akbar, M. Aazam, T. Ali, A. Khan et al., Context Representation and Fusion: Advancements and Opportunities, Sensors, vol.14, issue.6, pp.9628-9668, 2014.

D. Nadoveza and D. Kiritsis, Ontology-based approach for context modeling in enterprise applications, Computers in Industry, vol.65, issue.9, pp.1218-1231, 2014.

D. Nadoveza and D. Kiritsis, Ontology-based approach for context modeling in enterprise applications, Computers in Industry, vol.65, issue.9, pp.1218-1231, 2014.

Y. Nemoto, K. Uei, K. Sato, and Y. Shimomura, A Context-based Requirements Analysis Method for PSS Design, Procedia CIRP, vol.30, pp.42-47, 2015.

J. Pascoe, Adding generic contextual capabilities to wearable computers, Digest of Papers. Second International Symposium on Wearable Computers (Cat. No.98EX215), pp.92-99

M. Perttunen, M. Van-kleek, O. Lassila, and J. Riekki, Auditory Context Recognition Using SVMs, 2008 The Second International Conference on Mobile Ubiquitous Computing, Systems, Services and Technologies, vol.4, pp.1-28, 2008.

M. Poveda-villalón, M. C. Suárez-figueroa, and A. Gómez-pérez, Validating Ontologies with OOPS!, Lecture Notes in Computer Science, pp.267-281, 2012.

E. Rocklage, H. Kraft, A. Karatas, and J. Seewig, Automated scenario generation for regression testing of autonomous vehicles, 2017 IEEE 20th International Conference on Intelligent Transportation Systems (ITSC), pp.476-483, 2017.

M. B. Rosson and J. M. Carroll, Scenario-based design, pp.161-180, 2009.

, Taxonomy and Definitions for Terms Related to On-Road Motor Vehicle Automated Driving Systems, On-Road Automated Vehicle Standards Committee), vol.3016

A. Sathyanarayana, P. Boyraz, and J. H. Hansen, Information fusion for robust ?context and driver aware? active vehicle safety systems, Information Fusion, vol.12, issue.4, pp.293-303, 2011.

B. Schilit, N. Adams, and R. Want, Context-Aware Computing Applications, 1994 First Workshop on Mobile Computing Systems and Applications, pp.85-90, 1994.

B. Schilit, N. Adams, and R. Want, Context-Aware Computing Applications, 1994 First Workshop on Mobile Computing Systems and Applications, 1994.

B. N. Schilit and M. M. Theimer, Disseminating active map information to mobile hosts, IEEE Network, vol.8, issue.5, pp.22-32, 1994.

F. Schuldt, A. Reschka, and M. Maurer, A Method for an Efficient, Systematic Test Case Generation for Advanced Driver Assistance Systems in Virtual Environments, Automotive Systems Engineering II, pp.147-175, 2017.

F. Schuldt, A. Reschka, and M. Maurer, A Method for an Efficient, Systematic Test Case Generation for Advanced Driver Assistance Systems in Virtual Environments, Automotive Systems Engineering II, pp.147-175, 2017.

C. Sippl, F. Bock, C. Lauer, A. Heinz, T. Neumayer et al., Scenario-Based Systems Engineering: An Approach Towards Automated Driving Function Development, 2019 IEEE International Systems Conference (SysCon), pp.1-8, 2019.

Y. Sun, G. Yang, and X. Zhou, A novel ontology-based service model for cyber physical system, 2016 5th International Conference on Computer Science and Network Technology (ICCSNT), pp.125-131, 2016.

A. Sutcliffe, Scenario-based requirements engineering, Journal of Lightwave Technology, pp.320-329

S. Tartir, I. B. Arpinar, and A. P. Sheth, Ontological Evaluation and Validation, Theory and Applications of Ontology: Computer Applications, pp.115-130, 2010.

S. Tartir, I. B. Arpinar, and A. P. Sheth, Ontological Evaluation and Validation, Theory and Applications of Ontology: Computer Applications, pp.115-130, 2010.

S. Ulbrich, T. Menzel, A. Reschka, F. Schuldt, and M. Maurer, Defining and Substantiating the Terms Scene, Situation, and Scenario for Automated Driving, 2015 IEEE 18th International Conference on Intelligent Transportation Systems, pp.982-988, 2015.

S. Ulbrich, T. Nothdurft, M. Maurer, and P. Hecker, Graph-based context representation, environment modeling and information aggregation for automated driving, 2014 IEEE Intelligent Vehicles Symposium Proceedings, pp.541-547, 2014.

W. Wachenfeld, H. Winner, J. C. Gerdes, B. Lenz, M. Maurer et al., Use Cases for Autonomous Driving, Autonomous Driving, pp.9-37, 2016.

G. Weiss, F. Grigoleit, and P. Struss, Context modeling for dynamic configuration of automotive functions, 16th International IEEE Conference on Intelligent Transportation Systems (ITSC 2013), pp.839-844, 2013.

A. Zimmermann, A. Lorenz, and R. Oppermann, An Operational Definition of Context, Modeling and Using Context, pp.558-571

M. B. Rosson and J. M. Carroll, Scenario-based design, pp.161-180, 2009.

A. Sathyanarayana, P. Boyraz, and J. H. Hansen, Information fusion for robust ?context and driver aware? active vehicle safety systems, Information Fusion, vol.12, issue.4, pp.293-303, 2011.

F. Schuldt, A. Reschka, and M. Maurer, A Method for an Efficient, Systematic Test Case Generation for Advanced Driver Assistance Systems in Virtual Environments, Automotive Systems Engineering II, pp.147-175, 2017.

F. Schuldt, A. Reschka, and M. Maurer, A Method for an Efficient, Systematic Test Case Generation for Advanced Driver Assistance Systems in Virtual Environments, Automotive Systems Engineering II, pp.147-175, 2017.

C. Sippl, F. Bock, C. Lauer, A. Heinz, T. Neumayer et al., Scenario-Based Systems Engineering: An Approach Towards Automated Driving Function Development, 2019 IEEE International Systems Conference (SysCon), pp.1-8, 2019.

Ö. ?. Ta?, F. Kuhnt, J. M. Zöllner, and C. Stiller, Functional system architectures towards fully automated driving, Intelligent Vehicles Symposium (IV), pp.304-309, 2016.

S. Ulbrich, T. Nothdurft, M. Maurer, and P. Hecker, Graph-based context representation, environment modeling and information aggregation for automated driving, 2014 IEEE Intelligent Vehicles Symposium Proceedings, pp.541-547, 2014.

J. Voirin and F. Tailliez, Definition of the Principle Architecture or Logical Architecture, Model-Based System and Architecture Engineering with the Arcadia Method, pp.85-112, 2018.

D. F. Wyatt, C. M. Eckert, and P. J. Clarkson, Design of product architectures in incrementally developed complex products, DS 58-4: Proceedings of ICED 09, the 17th International Conference on Engineering Design, vol.4, pp.167-178, 2009.

N. Ahmad, D. C. Wynn, and P. J. Clarkson, Change impact on a product and its redesign process: a tool for knowledge capture and reuse, Research in Engineering Design, vol.24, issue.3, pp.219-244, 2012.

G. Bagschik, T. Menzel, and M. Maurer, Ontology based Scene Creation for the Development of Automated Vehicles, 2018 IEEE Intelligent Vehicles Symposium (IV), pp.1813-1820, 2018.

N. Chapin, J. E. Hale, K. M. Khan, J. F. Ramil, and W. Tan, Types of software evolution and software maintenance, Journal of Software Maintenance and Evolution: Research and Practice, vol.13, issue.1, pp.3-30, 2001.

H. Cheng and X. Chu, A network-based assessment approach for change impacts on complex product, Journal of Intelligent Manufacturing, vol.23, issue.4, pp.1419-1431, 2010.

P. J. Clarkson, C. Simons, and C. Eckert, Predicting Change Propagation in Complex Design, Journal of Mechanical Design, vol.126, issue.5, pp.788-797, 2004.

P. J. Clarkson, C. Simons, and C. Eckert, Predicting Change Propagation in Complex Design, Journal of Mechanical Design, vol.126, issue.5, pp.788-797, 2004.

E. Crawley, O. De-weck, S. Eppinger, C. Magee, J. Moses et al., The influence of architecture in engineering systems, Engineering Systems Monograph, 2004.

Y. Damak, Y. Leroy, G. Trehard, and M. Jankovic, Operational Context-Based Design Method of Autonomous Vehicles Logical Architectures, 2020 IEEE 15th International Conference of System of Systems Engineering (SoSE), 2020.

Y. Damak, Y. Leroy, G. Trehard, and M. Jankovic, Operational Context-Based Design Method of Autonomous Vehicles Logical Architectures, 2020 IEEE 15th International Conference of System of Systems Engineering (SoSE), 2020.

C. Eckert, P. J. Clarkson, and W. Zanker, Change and customisation in complex engineering domains, Research in Engineering Design, vol.15, issue.1, pp.1-21, 2004.

G. Fei, J. Gao, O. Owodunni, and X. Tang, A method for engineering design change analysis using system modelling and knowledge management techniques, International Journal of Computer Integrated Manufacturing, vol.24, issue.6, pp.535-551, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00701863

J. S. Gero, Design Prototypes: A Knowledge Representation Schema for Design, 1990.

J. S. Gero and U. Kannengiesser, The Function-Behaviour-Structure Ontology of Design, An Anthology of Theories and Models of Design, pp.263-283, 2014.

B. Hamraz, N. H. Caldwell, and P. John-clarkson, A Multidomain Engineering Change Propagation Model to Support Uncertainty Reduction and Risk Management in Design, Journal of Mechanical Design, vol.134, issue.10, 2012.

B. Hamraz, O. Hisarciklilar, K. Rahmani, D. C. Wynn, V. Thomson et al., Change prediction using interface data, Concurrent Engineering, vol.21, issue.2, pp.141-154, 2013.

T. A. Jarratt, C. M. Eckert, N. H. Caldwell, and P. J. Clarkson, Engineering change: an overview and perspective on the literature, Research in Engineering Design, vol.22, issue.2, pp.103-124, 2010.

E. C. Koh, N. H. Caldwell, and P. J. Clarkson, A method to assess the effects of engineering change propagation, Research in Engineering Design, vol.23, issue.4, pp.329-351, 2012.

J. Lee and Y. S. Hong, Bayesian network approach to change propagation analysis, Research in Engineering Design, vol.28, issue.4, pp.437-455, 2017.

M. V. Martin and K. Ishii, Design for variety: developing standardized and modularized product platform architectures, Research in Engineering Design, vol.13, issue.4, pp.213-235, 2002.

B. Morkos, J. Mathieson, and J. D. Summers, Comparative analysis of requirements change prediction models: manual, linguistic, and neural network, Research in Engineering Design, vol.25, issue.2, pp.139-156, 2014.

B. Morkos, P. Shankar, and J. D. Summers, Predicting requirement change propagation, using higher order design structure matrices: an industry case study, Journal of Engineering Design, vol.23, issue.12, pp.905-926, 2012.

G. A. Ollinger and T. F. Stahovich, RedesignIT?A Model-Based Tool for Managing Design Changes, Journal of Mechanical Design, vol.126, issue.2, pp.208-216, 2004.

K. R. Reddi and Y. B. Moon, A framework for managing engineering change propagation, International Journal of Innovation and Learning, vol.6, issue.5, p.461, 2009.

P. Roques, Capella: A System Modeling Solution, Systems Architecture Modeling with the Arcadia Method, pp.25-50, 2018.

F. Toulouse, Arr^ete?s /, 1788.

. Sae, Taxonomy and Definitions for Terms Related to On-Road Motor Vehicle Automated Driving Systems, On Road Automated Vehicle Standards Committee)

S. Ulbrich, T. Nothdurft, M. Maurer, and P. Hecker, Graph-based context representation, environment modeling and information aggregation for automated driving, 2014 IEEE Intelligent Vehicles Symposium Proceedings, pp.541-547, 2014.

Y. Xie and Y. Ma, Well-controlled engineering change propagation via a dynamic inter-feature association map, Research in Engineering Design, vol.27, issue.4, pp.311-329, 2016.

F. Yang and G. Duan, Developing a parameter linkage-based method for searching change propagation paths, Research in Engineering Design, vol.23, issue.4, pp.353-372, 2011.

S. Adam and K. Schmid, Effective Requirements Elicitation in Product Line Application Engineering ? An Experiment, Requirements Engineering: Foundation for Software Quality, pp.362-378, 2013.

S. Adam and K. Schmid, Effective Requirements Elicitation in Product Line Application Engineering ? An Experiment, Requirements Engineering: Foundation for Software Quality, pp.362-378, 2013.

N. Ahmad, D. C. Wynn, and P. J. Clarkson, Change impact on a product and its redesign process: a tool for knowledge capture and reuse, Research in Engineering Design, vol.24, issue.3, pp.219-244, 2012.

I. Alexander and F. Kiedaisch, Towards recyclable system requirements, Proceedings Ninth Annual IEEE International Conference and Workshop on the Engineering of Computer-Based Systems, pp.9-16

I. Alexander and F. Kiedaisch, Towards recyclable system requirements, Proceedings Ninth Annual IEEE International Conference and Workshop on the Engineering of Computer-Based Systems

Z. Alshaikh and C. Boughton, The Context Dynamics Matrix (CDM): An Approach to Modeling Context, 2009 16th Asia-Pacific Software Engineering Conference, pp.101-108, 2009.

A. Armand, D. Filliat, and J. Ibanez-guzman, Ontology-based context awareness for driving assistance systems, 2014 IEEE Intelligent Vehicles Symposium Proceedings, pp.227-233, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01012078

J. Bach, S. Otten, and E. Sax, Model based scenario specification for development and test of automated driving functions, 2016 IEEE Intelligent Vehicles Symposium (IV), pp.1149-1155, 2016.

G. Bagschik, T. Menzel, and M. Maurer, Ontology based Scene Creation for the Development of Automated Vehicles, 2018 IEEE Intelligent Vehicles Symposium (IV), pp.1813-1820, 2018.

R. Baheti and H. Gill, Future perspectives and cyber-physical systems, Control-Based Operating System Design, vol.12, pp.161-169

M. Baldauf, S. Dustdar, and F. Rosenberg, A survey on context-aware systems, International Journal of Ad Hoc and Ubiquitous Computing, vol.2, issue.4, p.263, 2007.

S. Behere and M. Törngren, A functional reference architecture for autonomous driving, Information and Software Technology, vol.73, pp.136-150, 2016.

M. Berkovich, J. M. Leimeister, and H. Krcmar, Requirements Engineering for Product Service Systems, Business & Information Systems Engineering, vol.3, issue.6, pp.369-380, 2011.

, DRM: A Design Reseach Methodology, DRM, a Design Research Methodology, pp.13-42, 2009.

F. Bock, C. Sippl, A. Heinzz, C. Lauerz, and R. German, Advantageous Usage of Textual Domain-Specific Languages for Scenario-Driven Development of Automated Driving Functions, 2019 IEEE International Systems Conference (SysCon), pp.1-8, 2019.

S. Bonnet, J. Voirin, D. Exertier, and V. Normand, Not (strictly) relying on SysML for MBSE: Language, tooling and development perspectives: The Arcadia/Capella rationale, 2016 Annual IEEE Systems Conference (SysCon), pp.1-6, 2016.

P. J. Brown, The stick-e document: a framework for creating context-aware applications, Electron. Publ.-Chichester, vol.8, pp.259-272, 1995.

F. Bubl and M. Balser, Tracing Cross-Cutting Requirements via Context-Based Constraints, Ninth European Conference on Software Maintenance and Reengineering, pp.80-90

F. Bubl and M. Balser, Tracing Cross-Cutting Requirements via Context-Based Constraints, Ninth European Conference on Software Maintenance and Reengineering

O. Cabrera, X. Franch, and J. Marco, Ontology-based context modeling in service-oriented computing: A systematic mapping, Data & Knowledge Engineering, vol.110, pp.24-53, 2017.

N. Chapin, J. E. Hale, K. M. Khan, J. F. Ramil, and W. Tan, Types of software evolution and software maintenance, Journal of Software Maintenance and Evolution: Research and Practice, vol.13, issue.1, pp.3-30, 2001.

H. Chen, T. Finin, and A. Joshi, An ontology for context-aware pervasive computing environments, The Knowledge Engineering Review, vol.18, issue.3, pp.197-207, 2003.

H. Chen, T. Finin, and A. Joshi, An ontology for context-aware pervasive computing environments, The Knowledge Engineering Review, vol.18, issue.3, pp.197-207, 2003.

W. Chen, C. Hoyle, and H. J. Wassenaar, A Choice Modeling Approach for Usage Context-Based Design, Decision-Based Design, pp.255-285, 2012.

H. Cheng and X. Chu, A network-based assessment approach for change impacts on complex product, Journal of Intelligent Manufacturing, vol.23, issue.4, pp.1419-1431, 2010.

P. J. Clarkson, C. Simons, and C. Eckert, Predicting Change Propagation in Complex Design, Journal of Mechanical Design, vol.126, issue.5, pp.788-797, 2004.

E. Crawley, O. De-weck, S. Eppinger, C. Magee, J. Moses et al., The influence of architecture in engineering systems, Eng. Syst. Monogr, 2004.

J. L. Crowley, J. Coutaz, G. Rey, and P. Reignier, Perceptual Components for Context Aware Computing, UbiComp 2002: Ubiquitous Computing, pp.117-134, 2002.
URL : https://hal.archives-ouvertes.fr/hal-02290180

K. Curcio, T. Navarro, A. Malucelli, and S. Reinehr, Requirements engineering: A systematic mapping study in agile software development, Journal of Systems and Software, vol.139, pp.32-50, 2018.

Y. Damak, M. Jankovic, Y. Leroy, and K. Chelbi, A Semi-automated Requirements Reuse and Recycling Process for Autonomous Transportation Systems R&D, Proceedings of the Design Society: International Conference on Engineering Design, vol.1, issue.1, pp.3551-3560, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02297520

Y. Damak, M. Jankovic, Y. Leroy, and B. Yannou, ANALYSIS OF SAFETY REQUIREMENTS EVOLUTION IN THE TRANSITION OF LAND TRANSPORTATION SYSTEMS TOWARD AUTONOMY, Proceedings of the DESIGN 2018 15th International Design Conference, pp.2845-2854, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01785779

Y. Damak, Y. Leroy, G. Trehard, and M. Jankovic, Operational Context-Based Design Method of Autonomous Vehicles Logical Architectures, 2020 IEEE 15th International Conference of System of Systems Engineering (SoSE), 2020.

Y. Damak, Y. Leroy, G. Trehard, and M. Jankovic, Operational Context-Based Design Method of Autonomous Vehicles Logical Architectures, 2020 IEEE 15th International Conference of System of Systems Engineering (SoSE), 2020.

O. De-weck, C. Eckert, and P. J. Clarkson, Guest editorial, Research in Engineering Design, vol.23, issue.4, pp.265-267, 2012.

A. K. Dey, Understanding and Using Context, Personal and Ubiquitous Computing, vol.5, issue.1, pp.4-7, 2001.

J. Dokic, B. Müller, and G. Meyer, European roadmap smart systems for automated driving, European Technology Platform on Smart Systems Integration, 2015.

I. Dumitrache, I. S. Sacala, M. A. Moisescu, and S. I. Caramihai, A Conceptual Framework for Modeling and Design of Cyber-Physical Systems, Studies in Informatics and Control, vol.26, issue.3, 2017.

C. Eckert, P. J. Clarkson, and W. Zanker, Change and customisation in complex engineering domains, Research in Engineering Design, vol.15, issue.1, pp.1-21, 2004.

C. Eckert, J. Clarkson, and C. Earl, Predictabilty of Change in Engineering: A Complexity View, Volume 5a: 17th International Conference on Design Theory and Methodology, pp.19-21, 2005.

S. D. Eppinger and T. R. Browning, Design Structure Matrix Methods and Applications, 2012.

J. Affenzeller, ERTRAC: The European Road Transport Research Advisory Council, Automated Driving, pp.607-610, 2016.

R. E. Fairley and R. H. Thayer, The concept of operations: The bridge from operational requirements to technical specifications, Annals of Software Engineering, vol.3, pp.417-432, 1997.

G. Fei, J. Gao, O. Owodunni, and X. Tang, A method for engineering design change analysis using system modelling and knowledge management techniques, International Journal of Computer Integrated Manufacturing, vol.24, issue.6, pp.535-551, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00701863

G. Fei, J. Gao, O. Owodunni, and X. Tang, A method for engineering design change analysis using system modelling and knowledge management techniques, International Journal of Computer Integrated Manufacturing, vol.24, issue.6, pp.535-551, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00701863

S. Fuchs, S. Rass, and K. Kyamakya, Integration of Ontological Scene Representation and Logic-Based Reasoning for Context-Aware Driver Assistance Systems, Contextaware Adaption Mechanisms for Pervasive and Ubiquitous Services, vol.11, 2008.

S. Fuchs, S. Rass, B. Lamprecht, and K. Kyamakya, A Model for Ontology-Based Scene Description for Context-Aware Driver Assistance Systems, Proceedings of the First International Conference on Ambient Media and Systems, p.5, 2008.

A. Garro, A. Tundis, D. Bouskela, A. Jardin, N. Thuy et al., On formal cyber physical system properties modeling: A new temporal logic language and a Modelica-based solution, 2016 IEEE International Symposium on Systems Engineering (ISSE), pp.1-8, 2016.

J. S. Gero, Design Prototypes: A Knowledge Representation Schema for Design. AI Mag. 11, 1990.

J. S. Gero and U. Kannengiesser, The Function-Behaviour-Structure Ontology of Design, An Anthology of Theories and Models of Design, pp.263-283, 2014.

S. Geyer, M. Kienle, B. Franz, H. Winner, K. Bengler et al., Concept and development of a unified ontology for generating test and use-case catalogues for assisted and automated vehicle guidance, IET Intelligent Transport Systems, vol.8, issue.3, pp.183-189, 2014.

B. Glimm, I. Horrocks, B. Motik, G. Stoilos, and Z. Wang, HermiT: An OWL 2 Reasoner, Journal of Automated Reasoning, vol.53, issue.3, pp.245-269, 2014.

B. Hamraz, N. H. Caldwell, and P. John-clarkson, A Multidomain Engineering Change Propagation Model to Support Uncertainty Reduction and Risk Management in Design, Journal of Mechanical Design, vol.134, issue.10, 2012.

B. Hamraz, O. Hisarciklilar, K. Rahmani, D. C. Wynn, V. Thomson et al., Change prediction using interface data, Concurrent Engineering, vol.21, issue.2, pp.141-154, 2013.

I. Handbook, Systems and software engineering. Life cycle management, Int. Counc. Syst. Eng

K. Henricksen and J. Indulska, A software engineering framework for context-aware pervasive computing, Second IEEE Annual Conference on Pervasive Computing and Communications, 2004. Proceedings of the, 2004.

A. Höfer and M. Herrmann, Scenario-based approach for developing ADAS and automated driving functions, Proceedings, pp.215-225, 2017.

J. Holt, S. A. Perry, and M. Brownsword, Model-Based Requirements Engineering, 2011.

M. Horridge, N. Drummond, J. Goodwin, A. Rector, and H. H. Wang, The manchester owl syntax. Presented at the In, Proc. of the 2006 OWL Experiences and Directions Workshop (OWL-ED2006), 2006.

I. Horváth, What the Design Theory of Social-Cyber-Physical Systems Must Describe, Explain and Predict?, An Anthology of Theories and Models of Design, pp.99-120, 2014.

I. Horvath, Cyber-Physical Systems: Design Challenges, Cyber-Physical Systems, pp.35-54, 2013.

R. Hull, P. Neaves, and J. Bedford-roberts, Towards situated computing, Digest of Papers. First International Symposium on Wearable Computers, pp.146-153

M. Irshad, K. Petersen, and S. Poulding, A systematic literature review of software requirements reuse approaches, Information and Software Technology, vol.93, pp.223-245, 2018.

T. A. Jarratt, C. M. Eckert, N. H. Caldwell, and P. J. Clarkson, Engineering change: an overview and perspective on the literature, Research in Engineering Design, vol.22, issue.2, pp.103-124, 2010.

J. C. Jensen, D. H. Chang, and E. A. Lee, A model-based design methodology for cyber-physical systems, 2011 7th International Wireless Communications and Mobile Computing Conference, pp.1666-1671, 2011.

S. Jesenski, J. E. Stellet, F. Schiegg, and J. M. Zollner, Generation of Scenes in Intersections for the Validation of Highly Automated Driving Functions, 2019 IEEE Intelligent Vehicles Symposium (IV), pp.502-509, 2019.

S. Jesenski, J. E. Stellet, F. Schiegg, and J. M. Zollner, Generation of Scenes in Intersections for the Validation of Highly Automated Driving Functions, 2019 IEEE Intelligent Vehicles Symposium (IV), 2019.

J. (. Jiao and C. Chen, Customer Requirement Management in Product Development: A Review of Research Issues, Concurrent Engineering, vol.14, issue.3, pp.173-185, 2006.

H. Kaiya and M. Saeki, Using Domain Ontology as Domain Knowledge for Requirements Elicitation, 14th IEEE International Requirements Engineering Conference (RE'06), pp.189-198, 2006.

S. Kang and Y. Choi, Sixth International Conference on Software Engineering, Artificial Intelligence, Networking and Parallel/Distributed Computing and First ACIS International Workshop on Self-Assembling Wireless Networks — SNPD/SAWN 2005 - Cover, Sixth International Conference on Software Engineering Artificial Intelligence Networking and Parallel/Distributed Computing and First ACIS International Workshop on Self-Assembling Wireless Networks (SNPD/SAWN 05), pp.330-337, 2005.

. Sungwon-kang and . Yoonseok-choi, Designing Logical Architectures of Software Systems, Sixth International Conference on Software Engineering, Artificial Intelligence, Networking and Parallel/Distributed Computing and First ACIS International Workshop on Self-Assembling Wireless Networks (SNPD/SAWN'05)

C. F. Kerry and J. Karsten, Self-driving cars

A. Khattak, N. Akbar, M. Aazam, T. Ali, A. Khan et al., Context Representation and Fusion: Advancements and Opportunities, Sensors, vol.14, issue.6, pp.9628-9668, 2014.

A. Knethen, B. Paech, F. Kiedaisch, and F. Houdek, Systematic requirements recycling through abstraction and traceability, Proceedings IEEE Joint International Conference on Requirements Engineering, pp.273-281, 2002.

E. C. Koh, N. H. Caldwell, and P. J. Clarkson, A method to assess the effects of engineering change propagation, Research in Engineering Design, vol.23, issue.4, pp.329-351, 2012.

H. Komoto, R. Hamberg, and T. Tomiyama, Supporting the Architecting Process of Adaptive Systems, Embedded Systems, pp.159-188, 2013.

H. Komoto, R. Hamberg, and T. Tomiyama, Supporting the Architecting Process of Adaptive Systems, Embedded Systems, pp.159-188, 2013.

J. Lee and Y. S. Hong, Bayesian network approach to change propagation analysis, Research in Engineering Design, vol.28, issue.4, pp.437-455, 2017.

M. V. Martin and K. Ishii, Design for variety: developing standardized and modularized product platform architectures, Research in Engineering Design, vol.13, issue.4, pp.213-235, 2002.

M. V. Martin and K. Ishii, Design for variety: developing standardized and modularized product platform architectures, Research in Engineering Design, vol.13, issue.4, pp.213-235, 2002.

M. B. Miles, A. M. Huberman, and J. Saldana, Qualitative Data Analysis: A Methods Sourcebook, 2018.

B. Morkos, J. Mathieson, and J. D. Summers, Comparative analysis of requirements change prediction models: manual, linguistic, and neural network, Research in Engineering Design, vol.25, issue.2, pp.139-156, 2014.

B. Morkos, P. Shankar, and J. D. Summers, Predicting requirement change propagation, using higher order design structure matrices: an industry case study, Journal of Engineering Design, vol.23, issue.12, pp.905-926, 2012.

B. Moros, C. Vicente-chicote, and A. Toval, REMM-Studio + : Modeling Variability to Enable Requirements Reuse, Lecture Notes in Computer Science, pp.530-531, 2008.

D. Nadoveza and D. Kiritsis, Ontology-based approach for context modeling in enterprise applications, Computers in Industry, vol.65, issue.9, pp.1218-1231, 2014.

Y. Nemoto, K. Uei, K. Sato, and Y. Shimomura, A Context-based Requirements Analysis Method for PSS Design, Procedia CIRP, vol.30, pp.42-47, 2015.

G. A. Ollinger and T. F. Stahovich, RedesignIT?A Model-Based Tool for Managing Design Changes, Journal of Mechanical Design, vol.126, issue.2, pp.208-216, 2004.

C. L. Pacheco, I. A. Garcia, J. A. Calvo-manzano, and M. Arcilla, A proposed model for reuse of software requirements in requirements catalog, Journal of Software: Evolution and Process, vol.27, issue.1, pp.1-21, 2014.

J. Pascoe, Adding generic contextual capabilities to wearable computers, Digest of Papers. Second International Symposium on Wearable Computers (Cat. No.98EX215), pp.92-99

M. Perttunen, M. Van-kleek, O. Lassila, and J. Riekki, Auditory Context Recognition Using SVMs, 2008 The Second International Conference on Mobile Ubiquitous Computing, Systems, Services and Technologies, vol.4, pp.1-28, 2008.

M. Poveda-villalón, M. C. Suárez-figueroa, and A. Gómez-pérez, Validating Ontologies with OOPS!, Lecture Notes in Computer Science, pp.267-281, 2012.

K. R. Reddi and Y. B. Moon, A framework for managing engineering change propagation, International Journal of Innovation and Learning, vol.6, issue.5, p.461, 2009.

E. Rocklage, H. Kraft, A. Karatas, and J. Seewig, Automated scenario generation for regression testing of autonomous vehicles, 2017 IEEE 20th International Conference on Intelligent Transportation Systems (ITSC), pp.476-483, 2017.

P. Roques, Capella: A System Modeling Solution, Systems Architecture Modeling with the Arcadia Method, pp.25-50, 2018.

F. Toulouse, Arr^ete?s /, 1788.

M. B. Rosson and J. M. Carroll, Scenario-based design, pp.161-180, 2009.

. Sae, Taxonomy and Definitions for Terms Related to On-Road Motor Vehicle Automated Driving Systems, On Road Automated Vehicle Standards Committee)

, Taxonomy and Definitions for Terms Related to On-Road Motor Vehicle Automated Driving Systems, On-Road Automated Vehicle Standards Committee), vol.3016

A. Sathyanarayana, P. Boyraz, and J. H. Hansen, Information fusion for robust ?context and driver aware? active vehicle safety systems, Information Fusion, vol.12, issue.4, pp.293-303, 2011.

M. N. Saunders, Research methods for business students, 2011.

H. Scherer, A. Albers, and N. Bursac, Model Based Requirements Engineering for the Development of Modular Kits, Procedia CIRP, vol.60, pp.145-150, 2017.

B. Schilit, N. Adams, and R. Want, Context-Aware Computing Applications, 1994 First Workshop on Mobile Computing Systems and Applications, pp.85-90, 1994.

B. Schilit, N. Adams, and R. Want, Context-Aware Computing Applications, 1994 First Workshop on Mobile Computing Systems and Applications, 1994.

B. N. Schilit and M. M. Theimer, Disseminating active map information to mobile hosts, IEEE Network, vol.8, issue.5, pp.22-32, 1994.

F. Schuldt, A. Reschka, and M. Maurer, A Method for an Efficient, Systematic Test Case Generation for Advanced Driver Assistance Systems in Virtual Environments, Automotive Systems Engineering II, pp.147-175, 2017.

F. Schuldt, A. Reschka, and M. Maurer, A Method for an Efficient, Systematic Test Case Generation for Advanced Driver Assistance Systems in Virtual Environments, Automotive Systems Engineering II, pp.147-175, 2017.

C. Sippl, F. Bock, C. Lauer, A. Heinz, T. Neumayer et al., Scenario-Based Systems Engineering: An Approach Towards Automated Driving Function Development, 2019 IEEE International Systems Conference (SysCon), pp.1-8, 2019.

Y. Sun, G. Yang, and X. Zhou, A novel ontology-based service model for cyber physical system, 2016 5th International Conference on Computer Science and Network Technology (ICCSNT), pp.125-131, 2016.

A. Sutcliffe, Scenario-based requirements engineering, Journal of Lightwave Technology, pp.320-329

S. Tartir, I. B. Arpinar, and A. P. Sheth, Ontological Evaluation and Validation, Theory and Applications of Ontology: Computer Applications, pp.115-130, 2010.

S. Tartir, I. B. Arpinar, and A. P. Sheth, Ontological Evaluation and Validation, Theory and Applications of Ontology: Computer Applications, pp.115-130, 2010.

Ö. ?. Ta?, F. Kuhnt, J. M. Zöllner, and C. Stiller, Functional system architectures towards fully automated driving, Intelligent Vehicles Symposium (IV), pp.304-309, 2016.

A. Toval, J. Nicolás, B. Moros, and F. García, Requirements Reuse for Improving Information Systems Security: A Practitioner?s Approach, Requirements Engineering, vol.6, issue.4, pp.205-219, 2002.

S. Ulbrich, T. Menzel, A. Reschka, F. Schuldt, and M. Maurer, Defining and Substantiating the Terms Scene, Situation, and Scenario for Automated Driving, 2015 IEEE 18th International Conference on Intelligent Transportation Systems, pp.982-988, 2015.

S. Ulbrich, T. Nothdurft, M. Maurer, and P. Hecker, Graph-based context representation, environment modeling and information aggregation for automated driving, 2014 IEEE Intelligent Vehicles Symposium Proceedings, pp.541-547, 2014.

J. Voirin and F. Tailliez, Definition of the Principle Architecture or Logical Architecture, Model-Based System and Architecture Engineering with the Arcadia Method, pp.85-112, 2018.

W. Wachenfeld, H. Winner, J. C. Gerdes, B. Lenz, M. Maurer et al., Use Cases for Autonomous Driving, Autonomous Driving, pp.9-37, 2016.

G. Weiss, F. Grigoleit, and P. Struss, Context modeling for dynamic configuration of automotive functions, 16th International IEEE Conference on Intelligent Transportation Systems (ITSC 2013), pp.839-844, 2013.

S. Winkler and J. Von-pilgrim, A survey of traceability in requirements engineering and model-driven development, Software & Systems Modeling, vol.9, issue.4, pp.529-565, 2009.

S. Winkler and J. Von-pilgrim, A survey of traceability in requirements engineering and model-driven development, Software & Systems Modeling, vol.9, issue.4, pp.529-565, 2009.

D. F. Wyatt, C. M. Eckert, and P. J. Clarkson, Design of product architectures in incrementally developed complex products, DS 58-4: Proceedings of ICED 09, the 17th International Conference on Engineering Design, vol.4, pp.167-178, 2009.

Y. Xie and Y. Ma, Well-controlled engineering change propagation via a dynamic inter-feature association map, Research in Engineering Design, vol.27, issue.4, pp.311-329, 2016.

Y. Xie and Y. Ma, Well-controlled engineering change propagation via a dynamic inter-feature association map, Research in Engineering Design, vol.27, issue.4, pp.311-329, 2016.

F. Yang and G. Duan, Developing a parameter linkage-based method for searching change propagation paths, Research in Engineering Design, vol.23, issue.4, pp.353-372, 2011.

F. Yang and G. Duan, Developing a parameter linkage-based method for searching change propagation paths, Research in Engineering Design, vol.23, issue.4, pp.353-372, 2011.

Z. Zhang, Effective requirements development-A comparison of requirements elicitation techniques, Software Quality Management XV: Software Quality in the Knowledge Society (SQM2007), pp.225-240, 2007.

A. Zimmermann, A. Lorenz, and R. Oppermann, An Operational Definition of Context, Modeling and Using Context, pp.558-571

, Voltage References, Voltage References, 2009.

S. Adam and K. Schmid, Effective Requirements Elicitation in Product Line Application Engineering ? An Experiment, Requirements Engineering: Foundation for Software Quality, pp.362-378, 2013.

S. Adam and K. Schmid, Effective Requirements Elicitation in Product Line Application Engineering ? An Experiment, Requirements Engineering: Foundation for Software Quality, pp.362-378, 2013.

I. Alexander and F. Kiedaisch, Towards recyclable system requirements, Proceedings Ninth Annual IEEE International Conference and Workshop on the Engineering of Computer-Based Systems, pp.9-16

I. Alexander and F. Kiedaisch, Towards recyclable system requirements, Proceedings Ninth Annual IEEE International Conference and Workshop on the Engineering of Computer-Based Systems

M. Berkovich, J. M. Leimeister, and H. Krcmar, Requirements Engineering for Product Service Systems, Business & Information Systems Engineering, vol.3, issue.6, pp.369-380, 2011.

K. Curcio, T. Navarro, A. Malucelli, and S. Reinehr, Requirements engineering: A systematic mapping study in agile software development, Journal of Systems and Software, vol.139, pp.32-50, 2018.

Y. Damak, M. Jankovic, Y. Leroy, and B. Yannou, ANALYSIS OF SAFETY REQUIREMENTS EVOLUTION IN THE TRANSITION OF LAND TRANSPORTATION SYSTEMS TOWARD AUTONOMY, Proceedings of the DESIGN 2018 15th International Design Conference, pp.2845-2854, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01785779

A. Garro, A. Tundis, D. Bouskela, A. Jardin, N. Thuy et al., On formal cyber physical system properties modeling: A new temporal logic language and a Modelica-based solution, 2016 IEEE International Symposium on Systems Engineering (ISSE), pp.1-8, 2016.

J. Holt, S. A. Perry, and M. Brownsword, Model-Based Requirements Engineering, 2011.

I. Horváth, What the Design Theory of Social-Cyber-Physical Systems Must Describe, Explain and Predict?, An Anthology of Theories and Models of Design, pp.99-120, 2014.

M. Irshad, K. Petersen, and S. Poulding, A systematic literature review of software requirements reuse approaches, Information and Software Technology, vol.93, pp.223-245, 2018.

J. (. Jiao and C. Chen, Customer Requirement Management in Product Development: A Review of Research Issues, Concurrent Engineering, vol.14, issue.3, pp.173-185, 2006.

H. Kaiya and M. Saeki, Using Domain Ontology as Domain Knowledge for Requirements Elicitation, 14th IEEE International Requirements Engineering Conference (RE'06), pp.189-198, 2006.

A. Knethen, B. Paech, F. Kiedaisch, and F. Houdek, Systematic requirements recycling through abstraction and traceability, Proceedings IEEE Joint International Conference on Requirements Engineering, pp.273-281, 2002.

B. Moros, C. Vicente-chicote, and A. Toval, REMM-Studio + : Modeling Variability to Enable Requirements Reuse, Lecture Notes in Computer Science, pp.530-531, 2008.

C. L. Pacheco, I. A. Garcia, J. A. Calvo-manzano, and M. Arcilla, A proposed model for reuse of software requirements in requirements catalog, Journal of Software: Evolution and Process, vol.27, issue.1, pp.1-21, 2014.

H. Scherer, A. Albers, and N. Bursac, Model Based Requirements Engineering for the Development of Modular Kits, Procedia CIRP, vol.60, pp.145-150, 2017.

H. Scherer, A. Albers, and N. Bursac, Model Based Requirements Engineering for the Development of Modular Kits, Procedia CIRP, vol.60, pp.145-150, 2017.

A. Sutcliffe, Scenario-based requirements engineering, Journal of Lightwave Technology, pp.320-329

A. Toval, J. Nicolás, B. Moros, and F. García, Requirements Reuse for Improving Information Systems Security: A Practitioner?s Approach, Requirements Engineering, vol.6, issue.4, pp.205-219, 2002.

S. Winkler and J. Von-pilgrim, A survey of traceability in requirements engineering and model-driven development, Software & Systems Modeling, vol.9, issue.4, pp.529-565, 2009.

Z. Zhang, Effective requirements development-A comparison of requirements elicitation techniques, Software Quality Management XV: Software Quality in the Knowledge Society (SQM2007), pp.225-240, 2007.