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Urban Digital Twins - A FIWARE-based model 원문보기

Automatisierungstechnik : AT, v.69 no.12, 2021년, pp.1106 - 1115  

Bauer, Martin ,  Cirillo, Flavio ,  Fürst, Jonathan ,  Solmaz, Gürkan ,  Kovacs, Ernö

Abstract AI-Helper 아이콘AI-Helper

AbstractThis article describes the use of digital twins for smart cities, i. e., the Urban Digital Twin (UDTw) concept. It shows how UDTws can be realized using the open source components from the FIWARE ecosystem that are already used in more than 200 cities worldwide. The used NGSI-LD standard is ...

Abstract

ZusammenfassungDieser Artikel beschreibt die Verwendung von digitalen Zwillingen für Smart Cities, d.h. das Konzept des städtischen digitalen Zwillings (Urban Digital Twin). Es zeigt, wie städtische digitale Zwillinge mit den Open Source Softwarekomponenten aus dem FIWARE-Ökosystem realisiert werden können, die bereits in mehr als 200 Städten weltweit im Einsatz sind. Der benutzte NGSI-LD-Standard wird von der Connecting Europe Facility, der Open Agile Smart City Community, der Indian Urban Data Exchange Plattform und dem Japanischen Smart City-Referenzmodell unterstützt. Im Gegensatz zu digitalen Zwillingen in anderen Domänen, z. B. in der Fertigung, wo digitale Zwillinge gemeinsam mit ihren physischen Gegenstücken entwickelt werden, werden städtische digitale Zwillinge von unterschiedlichen Akteuren zu unterschiedlichen Zeiten sowie auf Basis vieler verschiedener Datenquellen aus der Stadt entwickelt. Dieser Artikel baut auf einem bewährten Lebenszyklusmodell für digitale Zwillinge auf und verbindet dies mit einem konzeptionellen Modell für digitale Zwillinge. Dieses besteht aus Daten-, reagierenden, voraussagenden und prognostizierenden („was wäre wenn“) Funktionalitäten. Der Artikel beschreibt auch, wie KI-basierte Technologien verwendet werden können, um Wissen zu extrahieren, und damit aus der IoT-basierten Infrastruktur der Smart City städtische digitale Zwillinge zu bauen.

주제어

참고문헌 (25)

  1. 1. F. Tao, J. Cheng, Q. Qi, M. Zhang, H. Zhang and F. Sui, “Digital twin-driven product design, manufacturing and service with big data,” The International Journal of Advanced Manufacturing Technology , vol. 94, no. 9, pp. 3563-3576, 2018. Tao F. Cheng J. Qi Q. Zhang M. Zhang H. Sui F. Digital twin-driven product design, manufacturing and service with big data The International Journal of Advanced Manufacturing Technology 94 9 3563 3576 2018 

  2. 2. Q. Qi and F. Tao, “Digital twin and big data towards smart manufacturing and Industry 4.0: 360 degree comparison,” IEEE Access , vol. 6, pp. 3585-3593, 2018. Qi Q. Tao F. Digital twin and big data towards smart manufacturing and Industry 4.0: 360 degree comparison IEEE Access 6 3585 3593 2018 

  3. 3. G. Shao and M. Helu, “Framework for a digital twin in manufacturing: Scope and requirements,” Manufacturing Letters , vol. 24, pp. 105-107, 2020. Shao G. Helu M. Framework for a digital twin in manufacturing: Scope and requirements Manufacturing Letters 24 105 107 2020 

  4. 4. C. Zhang, G. Zhou, H. Li and Y. Cao, “Manufacturing blockchain of things for the configuration of a data-and knowledge-driven digital twin manufacturing cell,” IEEE Internet of Things Journal , vol. 7, no. 12, pp. 11884-11894, 2020. Zhang C. Zhou G. Li H. Cao Y. Manufacturing blockchain of things for the configuration of a data-and knowledge-driven digital twin manufacturing cell IEEE Internet of Things Journal 7 12 11884 11894 2020 

  5. 5. J. Conde, A. Munoz-Arcentales, A. Alonso, S. Lopez-Pernas and J. Salvachua, “Modeling digital twin data and architecture: A building guide with fiware as enabling technology,” IEEE Internet Computing , 2021. doi: 10.1109/MIC.2021.3056923 . Conde J. Munoz-Arcentales A. Alonso A. Lopez-Pernas S. Salvachua J. Modeling digital twin data and architecture: A building guide with fiware as enabling technology IEEE Internet Computing 2021 10.1109/MIC.2021.3056923 

  6. 6. F. Cirillo, G. Solmaz, E. L. Berz, M. Bauer, B. Cheng and E. Kovacs, “A standard-based open source iot platform: Fiware,” IEEE Internet of Things Magazine , vol. 2, no. 3, pp. 12-18, 2019. Cirillo F. Solmaz G. Berz E. L. Bauer M. Cheng B. Kovacs E. A standard-based open source iot platform: Fiware IEEE Internet of Things Magazine 2 3 12 18 2019 

  7. 7. S. Velickov, “Energy 4.0: Digital Twin for Electric Utilities, Grid Edge and Internet of Electricity,” April 2020. S. Velickov, “Energy 4.0: Digital Twin for Electric Utilities, Grid Edge and Internet of Electricity,” April 2020. 

  8. 8. M. Hollick, B. Freisleben, M. Knodt, G. Hornung, M. Muhlhauser, C. Fraune and J. I. Engels, “Resiliente informations- und kommunikationstechnologie fur ein krisenfestes deutschland,” Oktober 2020. M. Hollick, B. Freisleben, M. Knodt, G. Hornung, M. Muhlhauser, C. Fraune and J. I. Engels, “Resiliente informations- und kommunikationstechnologie fur ein krisenfestes deutschland,” Oktober 2020. 

  9. 9. J. Tang and H. Heinimann, “A resilience-oriented approach for quantitatively assessing recurrent spatial-temporal congestion on urban roads,” PLOS ONE , vol. 13, e0190616, 01 2018. Tang J. Heinimann H. A resilience-oriented approach for quantitatively assessing recurrent spatial-temporal congestion on urban roads PLOS ONE 13 e0190616 01 2018 

  10. 10. F. Cirillo, D. Gomez, L. Diez, I. Elicegui Maestro, T. B. J. Gilbert and R. Akhavan, “Smart city IoT services creation through large-scale collaboration,” IEEE Internet of Things Journal , vol. 7, no. 6, pp. 5267-5275, 2020. Cirillo F. Gomez D. Diez L. Elicegui Maestro I. Gilbert T. B. J. Akhavan R. Smart city IoT services creation through large-scale collaboration IEEE Internet of Things Journal 7 6 5267 5275 2020 

  11. 11. T. Meuser, L. Baumgartner and P. Lieser, “Pandemic skylines: Digital twins for more realism in epidemic simulations,” in ISCRAM 2021 Conference Proceedings , pp. 133-145, May 2021. Meuser T. Baumgartner L. Lieser P. Pandemic skylines: Digital twins for more realism in epidemic simulations ISCRAM 2021 Conference Proceedings 133 145 May 2021 

  12. 12. G. Solmaz, E. L. Berz, M. F. Dolatabadi, S. Aytac, J. Furst, B. Cheng and J. den Ouden, “Learn from iot: pedestrian detection and intention prediction for autonomous driving,” in Proc. of ACM SMAS’19 , pp. 27-32, 2019. Solmaz G. Berz E. L. Dolatabadi M. F. Aytac S. Furst J. Cheng B. den Ouden J. Learn from iot: pedestrian detection and intention prediction for autonomous driving Proc. of ACM SMAS’19 27 32 2019 

  13. 13. ETSI ISG CIM, “ETSI GS CIM 006 Context Information Management (CIM); Information Model,” 2019. ETSI ISG CIM, “ETSI GS CIM 006 Context Information Management (CIM); Information Model,” 2019. 

  14. 14. ETSI ISG CIM, “ETSI GS CIM 009 Context Information Management (CIM); NGSI-LD API,” 2021. ETSI ISG CIM, “ETSI GS CIM 009 Context Information Management (CIM); NGSI-LD API,” 2021. 

  15. 15. M. Bauer, E. Kovacs, A. Schulke, N. Ito, C. Criminisi, L.-W. Goix and M. Valla, “The context api in the oma next generation service interface,” in 2010 14th International Conference on Intelligence in Next Generation Networks , pp. 1-5, IEEE, 2010. Bauer M. Kovacs E. Schulke A. Ito N. Criminisi C. Goix L.-W. Valla M. The context api in the oma next generation service interface 2010 14th International Conference on Intelligence in Next Generation Networks 1 5 IEEE 2010 

  16. 16. J. Byun and D. Kim, “Oliot epcis: New epc information service and challenges towards the internet of things,” in 2015 IEEE International Conference on RFID (RFID) , pp. 70-77, IEEE, 2015. Byun J. Kim D. Oliot epcis: New epc information service and challenges towards the internet of things 2015 IEEE International Conference on RFID (RFID) 70 77 IEEE 2015 

  17. 17. S. Wahle, T. Magedanz and F. Schulze, “The openmtc framework-m2m solutions for smart cities and the internet of things,” in Proc. of IEEE WoWMoM’12 , pp. 1-3, IEEE, 2012. Wahle S. Magedanz T. Schulze F. The openmtc framework-m2m solutions for smart cities and the internet of things Proc. of IEEE WoWMoM’12 1 3 IEEE 2012 

  18. 18. R. Limosani, A. Manzi, L. Fiorini, P. Dario and F. Cavallo, “Connecting ros and fiware: Concepts and tutorial,” in Robot Operating System (ROS) , pp. 449-475, Springer, 2019. Limosani R. Manzi A. Fiorini L. Dario P. Cavallo F. Connecting ros and fiware: Concepts and tutorial Robot Operating System (ROS) 449 475 Springer 2019 

  19. 19. L. L. Fernandez, M. P. Diaz, R. B. Mejias, F. J. Lopez and J. A. Santos, “Kurento: a media server technology for convergent www/mobile real-time multimedia communications supporting webrtc,” in Proc. of IEEE WoWMoM’13 , pp. 1-6, IEEE, 2013. Fernandez L. L. Diaz M. P. Mejias R. B. Lopez F. J. Santos J. A. Kurento: a media server technology for convergent www/mobile real-time multimedia communications supporting webrtc Proc. of IEEE WoWMoM’13 1 6 IEEE 2013 

  20. 20. B. Cheng, G. Solmaz, F. Cirillo, E. Kovacs, K. Terasawa and A. Kitazawa, “Fogflow: Easy programming of iot services over cloud and edges for smart cities,” IEEE Internet of Things Journal , vol. 5, no. 2, pp. 696-707, 2018. Cheng B. Solmaz G. Cirillo F. Kovacs E. Terasawa K. Kitazawa A. Fogflow: Easy programming of iot services over cloud and edges for smart cities IEEE Internet of Things Journal 5 2 696 707 2018 

  21. 21. B. Cheng, J. Fuerst, G. Solmaz and T. Sanada, “Fog function: Serverless fog computing for data intensive iot services,” in 2019 IEEE International Conference on Services Computing (SCC) , pp. 28-35, 2019. Cheng B. Fuerst J. Solmaz G. Sanada T. Fog function: Serverless fog computing for data intensive iot services 2019 IEEE International Conference on Services Computing (SCC) 28 35 2019 

  22. 22. F. Cirillo, B. Cheng, R. Porcellana, M. Russo, G. Solmaz, H. Sakamoto and S. P. Romano, “Intentkeeper: Intent-oriented data usage control for federated data analytics,” in 2020 IEEE 45th Conference on Local Computer Networks (LCN) , pp. 204-215, 2020. Cirillo F. Cheng B. Porcellana R. Russo M. Solmaz G. Sakamoto H. Romano S. P. Intentkeeper: Intent-oriented data usage control for federated data analytics 2020 IEEE 45th Conference on Local Computer Networks (LCN) 204 215 2020 

  23. 23. J. Furst, M. Fadel Argerich, B. Cheng and E. Kovacs, “Towards knowledge infusion for robust and transferable machine learning in IoT,” Open Journal of Internet of Things (OJIOT) , vol. 6, no. 1, pp. 24-34, 2020. Furst J. Fadel Argerich M. Cheng B. Kovacs E. Towards knowledge infusion for robust and transferable machine learning in IoT Open Journal of Internet of Things (OJIOT) 6 1 24 34 2020 

  24. 24. A. Ratner, S. H. Bach, H. Ehrenberg, J. Fries, S. Wu and C. Re, “Snorkel: Rapid training data creation with weak supervision,” The VLDB Journal , vol. 29, no. 2, pp. 709-730, 2020. Ratner A. Bach S. H. Ehrenberg H. Fries J. Wu S. Re C. Snorkel: Rapid training data creation with weak supervision The VLDB Journal 29 2 709 730 2020 

  25. 25. J. Furst, B. Cheng and B. Hebgen, “Realizing the digital twin transition for smart cities,” Open Journal of Internet Of Things (OJIOT) , vol. 7, no. 1, pp. 32-42, 2021. Furst J. Cheng B. Hebgen B. Realizing the digital twin transition for smart cities Open Journal of Internet Of Things (OJIOT) 7 1 32 42 2021 

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