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ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 6
[37] ETSI. (Jul. 2020). “Harmonizing standards for [47] H. Laaki, Y. Miche, and K. Tammi, “Prototyping
edge computing – A synergized architecture a digital twin for real time remote control over
leveraging ETSI ISG MEC and 3GPP speci ica‐ mobile networks: Application of remote surgery,”
tions,” [Online]. Available: https://www.etsi. IEEE Access, vol. 7, pp. 20 325–20 336, 2019. DOI:
org/images/files/ETSIWhitePapers/ETSI_ 10.1109/ACCESS.2019.2897018.
wp36 _ Harmonizing - standards - for - edge - [48] S. H. Khajavi, N. H. Motlagh, A. Jaribion, L. C.
computing.pdf (visited on 2021). Werner, and J. Holmström, “Digital twin: Vision,
[38] 3GPP. (Sep. 2019). “3rd Generation Partner‐ bene its, boundaries, and creation for buildings,”
ship Project; Technical Speci ication Group IEEE Access, vol. 7, pp. 147 406–147 419, 2019.
Services and System Aspects; Release 15 De‐ DOI: 10.1109/ACCESS.2019.2946515.
scription; Summary of Rel‐15 Work Items
[49] B. R. Barricelli, E. Casiraghi, and D. Fogli, “A sur‐
(Release 15),” [Online]. Available: https :
vey on digital twin: De initions, characteristics,
/ / portal . 3gpp . org / desktopmodules / applications, and design implications,” IEEE Ac‑
Specifications / SpecificationDetails . cess, vol. 7, pp. 167 653–167 671, 2019. DOI: 10.
aspx?specificationId=3389 (visited on 2021). 1109/ACCESS.2019.2953499.
[39] ITU. (Feb. 2021). “Beyond 5G: What’s next for [50] G. Bachelor, E. Brusa, D. Ferretto, and A. Mitschke,
IMT?” [Online]. Available: https : / / www . itu . “Model‐based design of complex aeronautical
int / en / myitu / News / 2021 / 02 / 02 / 09 / systems through digital twin and thread con‐
20 / Beyond - 5G - IMT - 2020 - update - new - cepts,” IEEE Systems Journal, vol. 14, no. 2,
Recommendation (visited on 2021). pp. 1568–1579, 2020. DOI: 10 . 1109 / JSYST .
[40] M. Giordani, M. Polese, M. Mezzavilla, S. Rangan, 2019.2925627.
and M. Zorzi, “Toward 6G Networks: Use Cases [51] T. R. Wanasinghe, L. Wroblewski, B. K. Petersen,
and Technologies,” IEEE Communications Maga‑ R. G. Gosine, L. A. James, O. De Silva, G. K. I.
zine, vol. 58, no. 3, pp. 55–61, 2020. DOI: 10.1109/ Mann, and P. J. Warrian, “Digital twin for the oil
MCOM.001.1900411. and gas industry: Overview, research trends, op‐
[41] R. Minerva, G. M. Lee, and N. Crespi, “Digital Twin portunities, and challenges,” IEEE Access, vol. 8,
in the IoT Context: A Survey on Technical Fea‐ pp. 104 175–104 197, 2020. DOI: 10 . 1109 /
tures, Scenarios, and Architectural Models,” Pro‑ ACCESS.2020.2998723.
ceedings of the IEEE, vol. 108, no. 10, pp. 1785– [52] F. Laamarti, H. F. Badawi, Y. Ding, F. Arafsha, B.
1824, 2020. DOI: 10 . 1109 / JPROC . 2020 .
Ha idh, and A. E. Saddik, “An ISO/IEEE 11073
2998530.
Standardized Digital Twin Framework for Health
[42] D. Ross, “Digital twinning [information tech‐ and Well‐Being in Smart Cities,” IEEE Access,
nology virtual reality],” Engineering Technology, vol. 8, pp. 105 950–105 961, 2020. DOI: 10.1109/
vol. 11, no. 4, pp. 44–45, 2016. DOI: 10.1049/et. ACCESS.2020.2999871.
2016.0403. [53] B. Zong, C. Fan, X. Wang, X. Duan, B. Wang, and
[43] A. El Saddik, “Digital twins: The convergence J. Wang, “6G Technologies: Key Drivers, Core Re‐
of multimedia technologies,” IEEE MultiMedia, quirements, System Architectures, and Enabling
vol. 25, no. 2, pp. 87–92, 2018. DOI: 10 . 1109 / Technologies,” IEEE Vehicular Technology Maga‑
MMUL.2018.023121167. zine, vol. 14, no. 3, pp. 18–27, 2019. DOI: 10.1109/
[44] R. Saracco, “Digital twins: Bridging physical space MVT.2019.2921398.
and cyberspace,” Computer, vol. 52, no. 12, pp. 58– [54] W. Saad, M. Bennis, and M. Chen, “A Vision of
64, 2019. DOI: 10.1109/MC.2019.2942803. 6G Wireless Systems: Applications, Trends, Tech‐
[45] A. Rasheed, O. San, and T. Kvamsdal, “Digital twin: nologies, and Open Research Problems,” IEEE Net‑
Values, challenges and enablers from a model‐ work, vol. 34, no. 3, pp. 134–142, 2020. DOI: 10.
ing perspective,” IEEE Access, vol. 8, pp. 21 980– 1109/MNET.001.1900287.
22 012, 2020. DOI: 10 . 1109 / ACCESS . 2020 . [55] K. B. Letaief, W. Chen, Y. Shi, J. Zhang, and Y. A.
2970143. Zhang, “The Roadmap to 6G: AI Empowered Wire‐
[46] F. Tao, H. Zhang, A. Liu, and A. Y. C. Nee, “Digi‐ less Networks,” IEEE Communications Magazine,
tal twin in industry: State‐of‐the‐art,” IEEE Trans‑ vol. 57, no. 8, pp. 84–90, 2019. DOI: 10 . 1109 /
actions on Industrial Informatics, vol. 15, no. 4, MCOM.2019.1900271.
pp. 2405–2415, 2019. DOI: 10.1109/TII.2018. [56] Z. Zhang, Y. Xiao, Z. Ma, M. Xiao, Z. Ding, X.
2873186. Lei, G. K. Karagiannidis, and P. Fan, “6G Wire‐
less Networks: Vision, Requirements, Architec‐
ture, and Key Technologies,” IEEE Vehicular Tech‑
nology Magazine, vol. 14, no. 3, pp. 28–41, 2019.
DOI: 10.1109/MVT.2019.2921208.
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