The AQUAS ECSEL Project Aggregated Quality Assurance for Systems: Co-Engineering Inside and Across the Product Life Cycle
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Luigi Pomante | Tomás Vojnar | Thomas Gruber | Bohuslav Krena | Jabier Martinez | Vittoriano Muttillo | Pacome Magnin | Martin Matschnig | Filip Veljkovic | Bernhard Fischer
[1] E. Bukata,et al. The use of model-based test requirements throughout the product life cycle , 1999, 1999 IEEE AUTOTESTCON Proceedings (Cat. No.99CH36323).
[2] S. Paul,et al. Over 20 Years Of Research Into Cybersecurity And Safety Engineering: A Short Bibliography , 2015 .
[3] John Stark,et al. Product lifecycle management : 21st century paradigm for product realisation , 2005 .
[4] S. Paul. On The Meaning Of Security For Safety (S4S) , 2015 .
[5] Bryan Stallard,et al. Using electronic design automation throughout the product life cycle , 2010, 2010 Proceedings - Annual Reliability and Maintainability Symposium (RAMS).
[6] Lorenzo Strigini,et al. Software Diversity as a Measure for Reducing Development Risk , 2014, 2014 Tenth European Dependable Computing Conference.
[7] José Barata,et al. A survey of service-based systems-of-systems manufacturing systems related to product life-cycle support and energy efficiency , 2014, 2014 12th IEEE International Conference on Industrial Informatics (INDIN).
[8] Frank-Lothar Krause,et al. The Future of Product Development , 2007 .
[9] Yang Lu,et al. Industry 4.0: A survey on technologies, applications and open research issues , 2017, J. Ind. Inf. Integr..
[10] Luigi Pomante,et al. The AQUAS ECSEL Project , 2018, 2018 21st Euromicro Conference on Digital System Design (DSD).
[11] Dimitris Kiritsis,et al. Product Life-Cycle Metadata Modeling and Its Application with RDF , 2007, IEEE Transactions on Knowledge and Data Engineering.
[12] Jordi Cabot,et al. The MegaM@Rt2 ECSEL project: MegaModelling at Runtime - Scalable model-based framework for continuous development and runtime validation of complex systems , 2018, Microprocess. Microsystems.
[13] Dov Dori,et al. A Project–Product Model–Based Approach to Planning Work Breakdown Structures of Complex System Projects , 2015, IEEE Systems Journal.
[14] Anthony Finkelstein,et al. The life cycle of engineering products — an analysis of concepts , 1991 .
[15] David Chemouil,et al. A Viewpoint-Based Approach for Formal Safety & Security Assessment of System Architectures , 2014, MoDeVVa@MoDELS.
[16] Ludovic Piètre-Cambacédès,et al. A survey of approaches combining safety and security for industrial control systems , 2015, Reliab. Eng. Syst. Saf..
[17] George L. Kovacs. Evaluation of value changes between different phases of the Product Life-Cycle , 2013, 2013 IEEE 9th International Conference on Computational Cybernetics (ICCC).
[18] Sathish Pakki,et al. Method of safety critical requirements flow in product life cycle processes , 2011, 2011 Integrated Communications, Navigation, and Surveillance Conference Proceedings.
[19] Lorenzo Strigini,et al. Evidence-Based Security in Aerospace: From Safety to Security and Back Again , 2012, 2012 IEEE 23rd International Symposium on Software Reliability Engineering Workshops.
[20] K. Sakita,et al. Product Life Cycle Simulation System for EcoDesigners , 2005, 2005 4th International Symposium on Environmentally Conscious Design and Inverse Manufacturing.
[21] Bernard Sutton. Board Test and the Product Life Cycle: Get Wise to Board Test , 1999, IEEE Des. Test Comput..
[22] Dinh Son Nguyen. Total quality management in product life cycle , 2014, 2014 IEEE International Conference on Industrial Engineering and Engineering Management.
[23] Christoph Schmittner,et al. Security Application of Failure Mode and Effect Analysis (FMEA) , 2014, SAFECOMP.
[24] Christof Ebert,et al. Understanding the product life cycle: four key requirements engineering techniques , 2006, IEEE Software.
[25] Frank-Lothar Krause. The Future of Product Development: Proceedings of the 17th CIRP Design Conference , 2007 .
[26] Guojin Chen,et al. The product life cycle-oriented modeling method , 2010, Third International Workshop on Advanced Computational Intelligence.
[27] Robin E. Bloomfield,et al. Security-Informed Safety , 2016, Computer.
[28] Jonathan Ashley Osborn. Survey of Concurrent Engineering Environments and the Application of Best Practices towards the Development of a Multiple Industry, Multiple Domain Environment , 2009 .
[29] Tim Kelly,et al. The Goal Structuring Notation – A Safety Argument Notation , 2004 .
[30] Radek Fujdiak,et al. Seeking the Relation Between Performance and Security in Modern Systems: Metrics and Measures , 2018, 2018 41st International Conference on Telecommunications and Signal Processing (TSP).
[31] Peter Liggesmeyer,et al. Combination of Safety and Security Analysis - Finding Security Problems That Threaten The Safety of a System , 2013, DECS@SAFECOMP.
[32] Hans A. Hansson,et al. Safe cooperating cyber-physical systems using wireless communication: The SafeCOP approach , 2017, Microprocess. Microsystems.