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ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 1
[63] A. Nasrallah, A. S. Thyagaturu, Z. Alharbi, C. Wang, [75] Z. Pang, X. Huang, Z. Li, S. Zhang, Y. Xu, H. Wan,
X. Shao, M. Reisslein, and H. ElBakoury. Ultra‑low la‑ and X. Zhao. Flow scheduling for con lict‑free
tency (ULL) networks: The IEEE TSN and IETF Det‑ network updates in time‑sensitive software‑de ined
Net standards and related 5G ULL research. IEEE networks. IEEE Transactions on Industrial Informat‑
Comm. S. & T., 21(1):88–145, 2019. ics, 17(3):1668–1678, Mar. 2021.
[64] J. Navarro‑Ortiz, P. Romero‑Diaz, S. Sendra, [76] P. Pop, M. L. Raagaard, M. Gutierrez, and W. Steiner.
P. Ameigeiras, J. J. Ramos‑Munoz, and J. M. Lopez‑ Enabling fog computing for industrial automation
Soler. A survey on 5G usage scenarios and traf ic through time‑sensitive networking (TSN). IEEE
models. IEEE Commun. Surveys & Tutorials, Commun. Standards Mag., 2(2):55–61, 2018.
22(2):905–929, 2020.
[77] W. Quan, W. Fu, J. Yan, and Z. Sun. OpenTSN: An
[65] N. G. Nayak, F. Duerr, and K. Rothermel. Routing Al‑ open‑source project for time‑sensitive networking
gorithms for IEEE802. 1Qbv Networks. In Proc. RTN system development. CCF Transactions on Network‑
Workshop, ECRTS, 2017. ing, 3(1):51–65, 2020.
́
́
́
[66] N. G. Nayak, F. Duerr, and K. Rothermel. Routing al‑ [78] H. Sandor, B. Genge, and Z. Szanto. Infrastructure
gorithms for IEEE802.1Qbv networks. ACM SIGBED and framework for response and recon iguration in
Review, 15(3):13–18, 2018. Industry 4.0. In Proc. IEEE Int. Symp. on Digital
Forensic and Security (ISDFS), pages 1–6, 2018.
̈
[67] N. G. Nayak, F. Durr, and K. Rothermel. Time‑
̈
̈
sensitive software‑de ined network (TSSDN) for [79] M. Schungel, S. Dietrich, D. Ginthor, S.‑P. Chen, and
real‑time applications. In Proc. ACM Int. Conf. on M. Kuhn. Analysis of time synchronization for con‑
Real‑Time Networks and Systems, pages 193–202, verged wired and wireless networks. In Proc. IEEE
2016. Int. Conf. on Emerging Techn. and Factory Automa‑
tion (ETFA), volume 1, pages 198–205, 2020.
[68] N. G. Nayak, F. Durr, and K. Rothermel. Incre‑
̈
mental Flow Scheduling & Routing in Time‑sensitive [80] E. Schweissguth, D. Timmermann, H. Parzyjegla,
̈
Software‑de ined Networks. IEEE Transactions on P. Danielis, and G. Muhl. ILP‑based routing and
Industrial Informatics, 14(5):2066–2075, May 2017. scheduling of multicast realtime traf ic in time‑
sensitive networks. In Proc. IEEE Int. Conf. on Em‑
[69] V. Nguyen, E. Tasdemir, G. T. Nguyen, D. E. Lucani, bedded and Real‑Time Computing Systems and Appl.
F. H. P. Fitzek, and M. Reisslein. DSEP Fulcrum: Dy‑ (RTCSA), pages 1–11, 2020.
namic sparsity and expansion packets for Fulcrum
network coding. IEEE Access, 8:78293–78314, 2020. [81] M. Seaman. Paternoster policing and schedul‑
ing, Revision 2.1. May 2019. Available from
[70] G. S. Niemiec, L. M. S. Batista, A. E. Schaeffer‑Filho, http://www.ieee802.org/1/ iles/public/docs2019/cr‑
and G. L. Nazar. A survey on FPGA support for seaman‑paternoster‑policing‑scheduling‑0519‑
the feasible execution of virtualized network func‑ v04.pdf, Last accessed May 25, 2019.
tions. IEEE Communications Surveys & Tutorials,
22(1):504–525, 2020. [82] P. Shantharama, A. S. Thyagaturu, N. Karakoc, L. Fer‑
rari, M. Reisslein, and A. Scaglione. LayBack: SDN
̈
[71] J. Ohms, M. Bohm, and D. Wermser. Concept of a TSN management of multi‑access edge computing (MEC)
to real‑time wireless gateway in the context of 5G fornetworkaccess servicesand radioresource shar‑
URLLC. In Proc. IEEE Int. Conf. on Wireless Networks ing. IEEE Access, 6:57545–57561, 2018.
and Mobile Commun. (WINCOM), pages 1–6, 2020.
[83] P. Shantharama, A. S. Thyagaturu, and M. Reisslein.
[72] M. A. Ojewale and P. M. Yomsi. Routing heuristics for Hardware‑accelerated platforms and infrastruc‑
load‑balanced transmission in TSN‑based networks. tures for network functions: A survey of enabling
ACM Sigbed Review, 16(4):20–25, 2020. technologies and research studies. IEEE Access,
8:132021–132085, 2020.
[73] M. A. Ojewale, P. M. Yomsi, and B. Nikolic. Multi‑
́
level preemption in TSN: Feasibility and require‑ [84] W. Steiner, S. S. Craciunas, and R. S. Oliver. Traf ic
ments analysis. In Proc. IEEE Int. Symp. on Real‑Time planning for time‑sensitive communication. IEEE
Distributed Computing (ISORC), pages 47–55, 2020. Commun. Standards Mag., 2(2):42–47, 2018.
[74] R. S. Oliver, S. S. Craciunas, and W. Steiner. IEEE [85] M.‑T. Thi, S. B. H. Said, and M. Boc. SDN‑based
802.1Qbv gate control list synthesis using array the‑ management solution for time synchronization in
ory encoding. In Proc. IEEE Real‑Time and Embed‑ TSN networks. In Proc. IEEE Int. Conf. on Emerg‑
ded Technology and Applications Symposium (RTAS), ing Techn. and Factory Automation (ETFA), volume 1,
pages 13–24, 2018. pages 361–368, 2020.
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