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[1] Jiafu Wan,et al. A General Test Platform for Cyber-Physical Systems: Unmanned Vehicle with Wireless Sensor Network Navigation , 2011 .
[2] Lihui Wang,et al. Current status and advancement of cyber-physical systems in manufacturing , 2015 .
[3] Didier Stricker,et al. Visual Computing as a Key Enabling Technology for Industrie 4.0 and Industrial Internet , 2015, IEEE Computer Graphics and Applications.
[4] Ajinkya Bhave,et al. Multi-domain Modeling of Cyber-Physical Systems Using Architectural Views , 2010 .
[5] Ying Tan,et al. A prototype architecture for cyber-physical systems , 2008, SIGBED.
[6] Joseph Lindley,et al. Internet of Things: realising the potential of a trusted smart world , 2018 .
[7] Jorge Posada,et al. 9th International Conference on Knowledge Based and Intelligent Information and Engineering Systems a Perspective on Knowledge Based and Intelligent Systems Implementation in Industrie 4.0 , 2022 .
[8] Martin Eling,et al. Insurability of Cyber Risk , 2014 .
[9] Soo Dong Kim,et al. A Service-Based Approach to Designing Cyber Physical Systems , 2010, 2010 IEEE/ACIS 9th International Conference on Computer and Information Science.
[10] Sadie Creese,et al. Security Risk Assessment in Internet of Things Systems , 2017, IT Professional.
[11] Michael Huth,et al. Future Developments in Cyber Risk Assessment for the Internet of Things , 2018, Comput. Ind..
[12] Luís Almeida,et al. Structuring Communications for Mobile Cyber-Physical Systems , 2016, Management of Cyber Physical Objects in the Future Internet of Things.
[13] Michael Huth,et al. Analysing IoT Cyber Risk for Estimating IoT Cyber Insurance , 2019 .
[14] Sang Hyuk Son,et al. RDDS: A Real-Time Data Distribution Service for Cyber-Physical Systems , 2012, IEEE Transactions on Industrial Informatics.
[15] Lothar Thiele,et al. A hybrid approach to cyber-physical systems verification , 2012, DAC Design Automation Conference 2012.
[16] Gary W. Anderson. The Economic Impact of Technology Infrastructure for Additive Manufacturing , 2016 .
[17] Petar Radanliev,et al. Engineering Design Methodology for Green-Field Supply Chain Architectures Taxonomic Scheme , 2015 .
[18] Peter C. Evans,et al. Industrial Internet: Pushing the Boundaries of Minds and Machines , 2012 .
[19] Bernhard Rumpe,et al. MontiArcAutomaton: Architecture and Behavior Modeling of Cyber-Physical Systems with MontiArcAutomaton , 2015, Aachener Informatik-Berichte, Software Engineering.
[20] Oliver Niggemann,et al. Data-Driven Monitoring of Cyber-Physical Systems Leveraging on Big Data and the Internet-of-Things for Diagnosis and Control , 2015, DX.
[21] Gary W. Anderson. The Economic Impact of Technology Infrastructure for Smart Manufacturing | NIST , 2016 .
[22] Bradley R. Schmerl,et al. View Consistency in Architectures for Cyber-Physical Systems , 2011, 2011 IEEE/ACM Second International Conference on Cyber-Physical Systems.
[23] Antonio Iannopollo,et al. TAMING DR. FRANKENSTEIN: CONTRACT-BASED DESIGN FOR CYBER-PHYSICAL SYSTEMS , 2012 .
[24] N. Jazdi,et al. Cyber physical systems in the context of Industry 4.0 , 2014, 2014 IEEE International Conference on Automation, Quality and Testing, Robotics.
[25] Paulo Leitão,et al. Industrial automation based on cyber-physical systems technologies: Prototype implementations and challenges , 2016, Comput. Ind..
[26] Wilhelm Bauer,et al. Transforming to a Hyper-connected Society and Economy – Towards an “Industry 4.0” , 2015 .
[27] Lawrence A. Gordon,et al. The economics of information security investment , 2002, TSEC.
[28] Lihui Wang,et al. Machine availability monitoring and machining process planning towards Cloud manufacturing , 2013 .
[29] Jay Lee,et al. Service Innovation and Smart Analytics for Industry 4.0 and Big Data Environment , 2014 .
[30] Aditya Ashok,et al. Cyber-Physical Security Testbeds: Architecture, Application, and Evaluation for Smart Grid , 2013, IEEE Transactions on Smart Grid.
[31] Jay Lee,et al. A Cyber-Physical Systems architecture for Industry 4.0-based manufacturing systems , 2015 .
[32] Pete Burnap,et al. Definition of Internet of Things (IoT) Cyber Risk Discussion on a Transformation Roadmap for Standardisation of Regulations Risk Maturity Strategy Design and Impact Assessment , 2019, ArXiv.
[33] David De Roure,et al. Cyber Risk in IoT Systems , 2019 .
[34] Kagermann Henning. Recommendations for implementing the strategic initiative INDUSTRIE 4.0 , 2013 .
[35] Michael Huth,et al. Mapping the values of IoT , 2018, J. Inf. Technol..
[36] Cesar Sanin,et al. Virtual Engineering Object / Virtual Engineering Process: A specialized form of Cyber Physical System for Industrie 4.0 , 2015, KES.
[37] Jiafu Wan,et al. Cyber-Physical Systems for Optimal Energy Management Scheme of Autonomous Electric Vehicle , 2013, Comput. J..
[38] Mumbai,et al. Internet of Things (IoT): A Literature Review , 2015 .
[39] Jose Barata,et al. An agent-based interaction-oriented shop floor to support emergent diagnosis , 2010, 2010 8th IEEE International Conference on Industrial Informatics.
[40] Erik Brynjolfsson,et al. Race against the machine : how the digital revolution is accelerating innovation, driving productivity, and irreversibly transforming employment and the economy , 2011 .
[41] Michael Huth,et al. Cyber Security Framework for the Internet-of-Things in Industry 4.0 , 2019 .
[42] Ivan Stojmenovic,et al. Machine-to-Machine Communications With In-Network Data Aggregation, Processing, and Actuation for Large-Scale Cyber-Physical Systems , 2014, IEEE Internet of Things Journal.
[43] Jiafu Wan,et al. Implementing Smart Factory of Industrie 4.0: An Outlook , 2016, Int. J. Distributed Sens. Networks.
[44] Edward A. Lee,et al. A model-based design methodology for cyber-physical systems , 2011, 2011 7th International Wireless Communications and Mobile Computing Conference.
[45] David De Roure,et al. Integration of Cyber Security Frameworks‚ Models and Approaches for Building Design Principles for the Internet−of−Things in Industry 4.0 , 2018, IoT 2018.
[46] Sebastian Mosbach,et al. Applying Industry 4.0 to the Jurong Island Eco-industrial Park , 2015 .
[47] Andrea Vinci,et al. A Smart Platform for Large-Scale Cyber-Physical Systems , 2016, Management of Cyber Physical Objects in the Future Internet of Things.
[48] Peter I. Corke,et al. Transforming Agriculture through Pervasive Wireless Sensor Networks , 2007, IEEE Pervasive Computing.
[49] Lihui Wang,et al. A cloud-based approach for WEEE remanufacturing , 2014 .
[50] Keith Kirkpatrick,et al. Software-defined networking , 2013, CACM.
[51] Quanyan Zhu,et al. A hierarchical security architecture for cyber-physical systems , 2011, 2011 4th International Symposium on Resilient Control Systems.
[52] Tharam S. Dillon,et al. Web‐of‐things framework for cyber–physical systems , 2011, Concurr. Comput. Pract. Exp..
[53] Albert Benveniste,et al. A unifying view of loosely time-triggered architectures , 2010, EMSOFT '10.
[54] Detlef Zühlke,et al. Lean Automation enabled by Industry 4.0 Technologies , 2015 .
[55] Clemens Faller,et al. Industry 4.0 Learning Factory for regional SMEs , 2015 .
[56] Michael Huth,et al. From Risk Management to Risk Engineering: Challenges in Future ICT Systems , 2017 .
[57] Zachary A. Collier,et al. Systems engineering framework for cyber physical security and resilience , 2015, Environment Systems and Decisions.
[58] Syed Hassan Ahmed,et al. Cyber Physical System: Architecture, applications and research challenges , 2013, 2013 IFIP Wireless Days (WD).
[59] Petar Radanliev,et al. Supply Chain Systems Architecture and Engineering Design: Green-Field Supply Chain Integration , 2015 .
[60] Kleanthis Thramboulidis,et al. A cyber-physical system-based approach for industrial automation systems , 2014, Comput. Ind..
[61] Keyun Ruan,et al. Introducing cybernomics: A unifying economic framework for measuring cyber risk , 2017, Comput. Secur..
[62] A. Strauss,et al. The discovery of grounded theory: strategies for qualitative research aldine de gruyter , 1968 .
[63] G. Rodewald.. Aligning information security investments with a firm's risk tolerance , 2005, InfoSecCD '05.
[64] Marimuthu Palaniswami,et al. Internet of Things (IoT): A vision, architectural elements, and future directions , 2012, Future Gener. Comput. Syst..
[65] Ajey Lele. Internet of Things (IoT) , 2018, Disruptive Technologies for the Militaries and Security.
[66] Scott J. Shackelford. Protecting Intellectual Property and Privacy in the Digital Age: The Use of National Cybersecurity Strategies to Mitigate Cyber Risk , 2015 .
[67] Christian Berger,et al. Continuous Experimentation on Cyber-Physical Systems: Challenges and Opportunities , 2016, XP Workshops.
[68] Thomas Kuhn,et al. Virtual Validation of Cyber Physical Systems , 2015, Software Engineering & Management.
[69] Tyler Moore,et al. The Economics of Information Security , 2006, Science.
[70] C. Fung,et al. Value analysis of cyber security based on attack types , 2015 .
[71] Insup Lee,et al. Cyber-physical systems: The next computing revolution , 2010, Design Automation Conference.
[72] Boris Otto,et al. Design Principles for Industrie 4.0 Scenarios , 2016, 2016 49th Hawaii International Conference on System Sciences (HICSS).
[73] Michael Huth,et al. Cyber Risk impact Assessment - Assessing the Risk from the IoT to the Digital Economy , 2019 .
[74] Helmut Zaiser,et al. Competences for Cyber-physical Systems in Manufacturing – First Findings and Scenarios , 2014 .
[75] Jiafu Wan,et al. Industrie 4.0: Enabling technologies , 2015, Proceedings of 2015 International Conference on Intelligent Computing and Internet of Things.
[76] Pieter Reniers,et al. Security Risk Assessment , 2017 .
[77] Carsten Maple,et al. Future developments in standardisation of cyber risk in the Internet of Things (IoT) , 2019 .
[78] Daqiang Zhang,et al. VCMIA: A Novel Architecture for Integrating Vehicular Cyber-Physical Systems and Mobile Cloud Computing , 2014, Mobile Networks and Applications.
[79] Laurence T. Yang,et al. Internet of Everything , 2017, Mob. Inf. Syst..
[80] Bernhard Rumpe,et al. From Software Architecture Structure and Behavior Modeling to Implementations of Cyber-Physical Systems , 2014, Software Engineering.
[81] Nathalie Mitton,et al. Cyber-Physical Objects as Key Elements for a Smart Cyber-City , 2016, Management of Cyber Physical Objects in the Future Internet of Things.
[82] Giancarlo Fortino,et al. Management of Cyber Physical Objects in the Future Internet of Things, Methods, Architectures and Applications , 2016, Management of Cyber Physical Objects in the Future Internet of Things.
[83] Rainer Drath,et al. Industrie 4.0: Hit or Hype? [Industry Forum] , 2014, IEEE Industrial Electronics Magazine.
[84] Jiafu Wan,et al. A survey of Cyber-Physical Systems , 2011, 2011 International Conference on Wireless Communications and Signal Processing (WCSP).
[85] Michael Engel,et al. Cyber-Physical Systems: Opportunities, Challenges and (Some) Solutions , 2016, Management of Cyber Physical Objects in the Future Internet of Things.
[86] G. Seliger,et al. Opportunities of Sustainable Manufacturing in Industry 4.0 , 2016 .
[87] Albert Benveniste,et al. Loosely Time-Triggered Architectures for Cyber-Physical Systems , 2010, 2010 Design, Automation & Test in Europe Conference & Exhibition (DATE 2010).
[88] Daqiang Zhang,et al. Context-aware vehicular cyber-physical systems with cloud support: architecture, challenges, and solutions , 2014, IEEE Communications Magazine.
[89] Malte Brettel,et al. Enablers for Self-optimizing Production Systems in the Context of Industrie 4.0 , 2016 .
[90] Petar Radanliev,et al. Economic impact of IoT cyber risk - Analysing past and present to predict the future developments in IoT risk analysis and IoT cyber insurance , 2018, IoT 2018.
[91] Feng Xia,et al. From machine-to-machine communications towards cyber-physical systems , 2013, Comput. Sci. Inf. Syst..
[92] Dmitry Ivanov,et al. Integrated scheduling of material flows and information services in industry 4.0 supply networks , 2015 .
[93] Petar Radanliev,et al. Green-Field Architecture for Sustainable Supply Chain Strategy Formulation , 2015 .
[94] Tobias Wagner,et al. Mental Strain as Field of Action in the 4th Industrial Revolution , 2014 .
[95] Christian Berger,et al. Autonomous Driving-5 Years after the Urban Challenge: The Anticipatory Vehicle as a Cyber-Physical System , 2014, GI-Jahrestagung.
[96] Petar Radanliev,et al. Architectures for Green-Field Supply Chain Integration: Supply Chain Integration Design , 2015 .
[97] Elena Gatti,et al. „Made in China 2025“ , 2019, Digitales China.
[98] Vipin Kumar,et al. Trends in big data analytics , 2014, J. Parallel Distributed Comput..
[99] Jerry Kaplan,et al. Artificial intelligence , 2016, Commun. ACM.
[100] Yacov Y. Haimes,et al. A holistic roadmap for survivable infrastructure systems , 2002, IEEE Trans. Syst. Man Cybern. Part A.
[101] Mathias Schmitt,et al. Towards Industry 4.0 - Standardization as the crucial challenge for highly modular, multi-vendor production systems , 2015 .