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Characterinsing the nature of cybephysical systems is not easy task. What are core aspects and what are not? This is especially tricky in systems-of-systems aggregates. Some EU-funded cyberphysical systems projects have performed a roadmapping exercise over the domain of Cyber-Physical Systems-of-Systems. In particlular, the EU-CPSoS project roadmap has identified three major challenges and eleven research and innovation policies that shall be addressed to solve the three challenges. The third core challenge addresses Cognitive Cyber-physical Systems of Systems. In this article we address the role that knowledge and cognition are to play in future cyber-physical systems of systems from a life-cycle perspective of high autonomy systems.
Wydawca
Rocznik
Tom
Strony
355--373
Opis fizyczny
Bibliogr. 77 poz., rys., tab.
Twórcy
autor
- The Autonomous Systems Laboratory, Polytechnic University of Madrid, 28040 Madrid, Spain
autor
- The Autonomous Systems Laboratory, Polytechnic University of Madrid, 28040 Madrid, Spain
autor
- The Autonomous Systems Laboratory, Polytechnic University of Madrid, 28040 Madrid, Spain
autor
- The Autonomous Systems Laboratory, Polytechnic University of Madrid, 28040 Madrid, Spain
Bibliografia
- [1] Spender J-C and Grant R M 1996 Knowledge and the Firm: Overview, Strategic Management Journal 17 5
- [2] Bermejo J and Hernández C and Sanz R 2016 Model-based Engineering of Autonomous Systems using Ontologies and Metamodels
- [3] Sanz R., Bermejo J, Escasany J, Chinchilla R and Garcia C A 2003 Meaning generation and artificial wisdom 401
- [4] System of Systems Engineering: Innovations for the Twenty-First Century 2008, Wiley
- [5] Maier M W 1998 Architecting principles for systems-of-systems, Systems Engineering, John Wiley Sons, Inc., 1 (4) 2674
- [6] DoD 2008 Systems Engineering Guide for Systems of Systems, Technical Report Version 1.0.
- [7] Leveson N 2013 The Drawbacks in Using The Term ‘System of Systems’, Biomedical Instrumentation & Technology March/April 115
- [8] Walden D D, Roedler G J, Forsberg K J, Hamelin R D and Shortell T M 2015 Systems Engineering Handbook. A Guide for System Life Cycle Processes and Activities, Wiley
- [9] Iarovyi S and Mohammed W M and Lobov A and Ferrer B R and Lastra J L M 2016 Cyber-Physical Systems for Open Knowledge-Driven Manufacturing Execution Systems, Proceedings of the IEEE 104 (5) 1142
- [10] Newell A 1982 The Knowledge Level, Artificial Intelligence 18 87
- [11] Schreiber G T and Akkermans H 2000 Knowledge Engineering and Management: The CommonKADS Methodology, MIT Press
- [12] Craik K J W 1943 The Nature of Explanation, Cambridge University Press
- [13] Halladay S and Milligan C 2004 The application of network science principles to knowledge simulation
- [14] Fong P S.W. 2003 Knowledge creation in multidisciplinary project teams: an empirical study of the processes and their dynamic interrelationships, International Journal of Project Management 21 (7) 497
- [15] Gamma E, Helm R, Johnson R and Vlissides J 1995 Design Patterns: Elements of Reusable Object-Oriented Software, Addison-Wesley Publishing Company
- [16] Bermejo-Alonso J, Sanz R, Rodriguez M and Hernandez C 2010 Ontology-Based Engineering of Autonomous Systems 47
- [17] OMG 2011 Business Process Model and Notation (BPMN) Version 2.0
- [18] Hawtin J W and Chung P W H
- [19] TAMS4CPS 2016 Draft Strategic Research Agenda for Collaboration. Modelling and Simulation for Cyber-Physical-Systems
- [20] Merrill M D 2000 Knowledge objects and mental models 244
- [21] Mitcham C 1994 Thinking through technology. The path between engineering and philosophy, The University of Chicago Press
- [22] Leveson N 2012 Engineering a safer world: systems thinking applied to safety, The MIT Press
- [23] AMADEOS 2016 AMADEOS Conceptual Model - Revised D2.3
- [24] CPSOS 2016 Proposal of a European Research and Innovation Agenda on Cyber-physical Systems of Systems — 2016-2025 D3.3
- [25] Ratcheva V 2009 Integrating diverse knowledge through boundary spanning processes – The case of multidisciplinary project teams, International Journal of Project Management 27 (3) 206
- [26] Vincenti W G 1993 What Engineers Know and How They Know It, Johns Hopkins University Press
- [27] CPSOS 2016 Analysis of the State-of-the-Art and Future Challenges in Cyber-physical Systems of Systems D2.4
- [28] Wan S, Li D, Gao J, Roy R and Tong Y 2017 Process and knowledge management in a collaborative maintenance planning system for high value machine tools, Computers in Industry 84 14
- [29] Hayes M. and Walsham G 2003 Knowledge sharing and ICTs: A relational perspective, Blackwell 54
- [30] CyPhERS 2013 Characteristics, capabilities, potential application of cyber-physical systems: a preliminary analysis D2.1
- [31] Karsai G and Sztipanovits J 2008 Model-Integrated Development of Cyber-Physical Systems, Springer Berlin Heidelberg 46
- [32] CyPhERS 2014 CPS Methods and Techniques D4.1
- [33] Schatz B 2014 The role of models in engineering of Cyber-Physical Systems: challenges and possibilities
- [34] Smirnov A, Levashova T, Shilov N and Sandkuhl K 2014 COntology for cyber-physical-social systems self-organisation 1017
- [35] Derler P, Lee E A and Sangiovanni-Vincentelli A 2012 Modeling Cyber-Physical Systems, Proceedings of the IEEE (special issue on CPS) 100 (1) 13
- [36] NIST Steering Committee for Foundations in Innovation for Cyber-Physical Systems 2013 Strategic R&D Opportunities for 21st Century Cyber-Physical Systems
- [37] CyPhERS 2015 Research Agenda and Recommendation for Actions D6.1+2
- [38] Geisberger E and Broy M 2015 Living in a networked world. Integrated research agenda Cyber-Physical Systems (agendaCPS). ACATECH Study.
- [39] CPS Summit 2008 Cyber-physical Systems Summit
- [40] NIST 2013 Strategic Vision and Business Drivers for 21st Century Cyber-Physical Systems
- [41] Floridi L 2005 Is Semantic Information Meaningful Data?, Philosophy and Phenomenological Research 351
- [42] Schatsky D, Muraskin C and Gurumurthy R 2014 Demystifying artificial intelligence. What business leaders need to know about cognitive technologies
- [43] Kuipers B 2005 Consciousness: Drinking from the Firehose of Experience 20 1298
- [44] Broy M and Schmidt A 2014 Challenges in Engineering Cyber-Physical Systems, Computer, IEEE Computer Society Press, 47 (2) 70
- [45] Munir S, Stankovic J A, Chieh-Jan M L and Shan L 2013 Cyber Physical System Challenges for Human-in-the-Loop Control, USENIX
- [46] Hernández C, Fernández J L, Guadalupe S-E, Bermejo-Alonso J and Sanz R 2015 Model-Based Metacontrol for Self-adaptation, Springer, I 643
- [47] Williams T 2002 Knowledge and Its Limits, Oxford University Press
- [48] CyPhERS 2014 CPS: State of the Art D5.1
- [49] Kopetz H A 2014 A Conceptual Model for the Information Transfer in Systems of Systems
- [50] Jakus G, Milutinović V, Omerović S and Tomazžić S 2013 Concepts, Ontologies, and Knowledge Representation, Springer
- [51] Reed S K and Pease A 2017 Reasoning from imperfect knowledge, Cognitive Systems Research 41 56
- [52] Pezzillo Iacono P, Marcello M, Marcello M, Gianluigi M and Caterina G 2012 Knowledge creation and inter-organizational relationships: the development of innovation in the railway industry, Journal of Knowledge Management 16 (4) 6046
- [53] Canonico P and De Nito E and Mangia G 2012 Control mechanisms and knowledge integration in exploitative project teams: a case study from the coal fired power plant industry, Journal of Knowledge Management 16 (4) 5389
- [54] Noor S and Minhas H N 2014 Context-Aware Perception for Cyber-Physical Systems, Springer Singapore, 540 149
- [55] Meijers A W M and de Vries M J 2009 Technological Knowledge, John Wiley & Sons Ltd 70
- [56] Cupani A 2006 La peculiaridad del conocimiento tecnológico, Scientia Studia Sao Paulo 4 (3) 353
- [57] Boulding K E 1956 General Systems Theory—The Skeleton of Science, Management Science 2 (3) 1978
- [58] Cheng P, Chong J C and Chen S C, Tarek I E and Millar C J M 2004 Knowledge repositories in knowledge cities: institutions, conventions and knowledge subnetworks, Journal of Knowledge Management 8 (5) 96
- [59] Mugellesi Dow, Siegmar R and Siegmar P 2010 Managing knowledge for spacecraft operations at ESOC, Journal of Knowledge Management 14 (5) 659
- [60] Francalanza E, Borg J and Constantinescu C 2017 A knowledge-based tool for designing cyber physical production systems, Computers in Industry 84 39
- [61] Howard C, Di Eugenio B, Jordan P and Katz S 2016 Exploring Initiative as a Signal of Knowledge Co-Construction During Collaborative Problem Solving, Cognitive Science
- [62] Lyu G, Chu X and Xue D 2017 Product modeling from knowledge, distributed computing and lifecycle perspectives: A literature review, Computers in Industry 84 1
- [63] Millar C.J.M. and Ju Choi C 2010 Development and knowledge resources: a conceptual analysis, Journal of Knowledge Management 14 (5) 759
- [64] Nielsen C B, Larsen P G, Fitzgerald J, Woodcock J and Peleska J 2015 Systems of Systems Engineering: Basic Concepts, Model-Based Techniques, and Research Directions, ACM Computing Surveys 48 (2) 18
- [65] Bures T, Nicola R, Gerostathopoulos I, Hoch N, Kit M, Koch N, Monreale G V, Montanari U, Pugliese R, Serbedzija N, Wirsing M and Zambonelli F 2013 A Life Cycle for the Development of Autonomic Systems: The e-Mobility Showcase, IEEE Computer Society Press, IEEE Conference on Self-Adaptive and Self-Organizing Systems (SASO)
- [66] Lind M 2009 Challenges to Cognitive Systems Engineering: Understanding Qualitative Aspects of Control Actions
- [67] Conant R C and Ross A W 1970 Every Good Regulator of a System Must Be a Model of that System, International Journal of Systems Science, Taylor & Francis, 1 (2) 89
- [68] Simon H A and Newell A 1956 Models: their uses and limitations, University of Chicago Press 66
- [69] Newell A 1980 Physical Symbol Systems, Cognitive Science 4 1353
- [70] Landauer R 1992 Information is Physical 1
- [71] Landauer C and Bellman K L 2001 New Architectures for Constructed Complex Systems, Applied Mathematics and Computation 120 149
- [72] Computational Intelligence for Decision Support in Cyber-Physical Systems 2014, Springer Singapore, 540
- [73] Vogel T and Giese H 2012 A language for feedback loops in self-adaptive systems: Executable runtime megamodels 129
- [74] Clark J O 2008 System of systems engineering and family of systems engineering from a standards perspective, 2008 IEEE International Conference on System of Systems Engineering 1
- [75] Xiong J, Ge B-f, Zhang X-k, Yang K-w and Chen Y-w 2010 Evaluation method of system-of-systems architecture using knowledge-based executable model 1417
- [76] Bongard J C 2013 Evolutionary Robotics, Commun. ACM, ACM, 56 (8) 74
- [77] Vogel T and Giese H 2014 Model-Driven Engineering of Self-Adaptive Software with EUREMA, ACM Trans. Auton. Adapt. Syst., ACM, 8 (4) 18
Uwagi
PL
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-cfad7e3e-21fb-4d0f-be18-680c6f0ee799