Page 45 - ITUJournal Future and evolving technologies Volume 2 (2021), Issue 1
P. 45
ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 1
tially help in lexibly providing high‑quality 5G URLLC [7] R. Amin, M. Reisslein, and N. Shah. Hybrid SDN net‑
services for varying traf ic dynamics. Similarly, TSN re‑ works: A survey of existing approaches. IEEE Com‑
con iguration may aid low‑latency real‑time services in munications Surveys & Tutorials, 20(4):3259–3306,
future WiFi networks, which may incorporate TSN, see 2018.
e.g., [5,14,35].
[8] A. Arestova, K.‑S. J. Hielscher, and R. German. Design
In the wider context of QoS networking and related ap‑ of a hybrid genetic algorithm for Time‑Sensitive Net‑
plications, deterministic networking should be examined working. In Proc. Int. Conf. on Measurement, Mod‑
in the context of emerging multiple‑access edge comput‑ elling and Evaluation of Computing Sys., pages 99–
ing (MEC) [21, 33, 58, 82], in particular MEC settings for 117, 2020.
low‑latency applications [23, 90, 94]. As an alternative
approach to coordinating the recon igurations, emerg‑ [9] V. Balasubramanian, M. Aloqaily, and M. Reisslein.
ing softwarized control and virtualization paradigms can An SDN architecture for time sensitive industrial
be explored [7, 13, 19, 20, 44, 56, 75, 78]. Regarding the IoT. Computer Networks, 186(107739):1–12, Feb.
reliability aspects, a potential future research direction 2021.
is to explore low‑latency network coding mechanisms,
e.g., [4,18,24,32,54,55,69], to enhance networking pro‑ [10] Belliardi, Rudy et al. Use Cases IEC/IEEE
tocols targeting reliable low‑latency communication. 60802, V1.3, Sept. 2018. Available from
http://www.ieee802.org/1/ iles/public/docs2018/
REFERENCES 60802‑industrial‑use‑cases‑0918‑v13.pdf; Last ac‑
cessed Feb. 19, 2019.
[1] IEEE Standard for Local and Metropolitan Area
Networks—Virtual Bridged Local Area Networks [11] L. L. Bello and W. Steiner. A perspective on
Amendment 14: Stream Reservation Protocol IEEE time‑sensitive networking for industrial com‑
(SRP). IEEE Std 802.1Qat‑2010 (Revision of IEEE Std munication and automation systems. Proc. IEEE,
802.1Q‑2005), pages 1–119, Sept. 2010. 107(6):1094–1120, 2019.
[12] A. Bierman, M. Bjorklund, and K. Watsen. RESTCONF
[2] IEEE Standard for Local and metropolitan area net‑ Protocol. RFC 8040, Jan. 2017.
works – Bridges and Bridged Networks ‑ Amend‑
̈
ment 25: Enhancements for Scheduled Traf ic. [13] M. Bohm, J. Ohms, M. Kumar, O. Gebauer, and
IEEE Std 802.1Qbv‑2015 (Amendment to IEEE Std D. Wermser. Dynamic real‑time stream reservation
802.1Q— as amended by IEEE Std 802.1Qca‑2015, for IEEE 802.1 time‑sensitive networks with Open‑
IEEE Std 802.1Qcd‑2015, and IEEE Std 802.1Q—/Cor Flow. In Proc. Int. Conf. on Applied Innovations in IT,
1‑2015), pages 1–57, Mar. 2016. (ICAIIT), pages 7–12, 2020.
[14] D. Cavalcanti, S. Bush, M. Illouz, G. Kronauer,
[3] IEEE Draft Standard for Local and metropolitan A. Regev, and G. Venkatesan. Wireless TSN‑
area networks–Media Access Control (MAC) Bridges de initions use cases & standards roadmap. Avnu
and Virtual Bridged Local Area Networks Amend‑ Alliance White Paper, pages 1–16, Mar. 2020.
ment: Stream Reservation Protocol (SRP) Enhance‑
ments and Performance Improvements. IEEE [15] F. Chen. Resource Allocation Protocol
P802.1Qcc/D2.0, October 2017, pages 1–207, Jan. (RAP) based on LRP for Distributed Con‑
2017. iguration of Time‑Sensitive Streams, 2017.
http://ieee802.org/1/ iles/public/docs2017/tsn‑
[4] J. Acevedo, R. Scheffel, S. Wunderlich, M. Hasler, chen‑RAP‑whitepaper‑0917‑v01.pdf.
S. Pandi, J. Cabrera, F. Fitzek, G. Fettweis, and
M. Reisslein. Hardware acceleration for RLNC: [16] C.‑C. Chuang, T.‑H. Yu, C.‑W. Lin, A.‑C. Pang, and T.‑J.
A case study based on the Xtensa processor with Hsieh. Online stream‑aware routing for TSN‑based
the Tensilica instruction‑set extension. Electronics, industrial control systems. In Proc. IEEE Int. Conf.
7(9):180.1–180.22, 2018. on Emerging Techn. and Factory Automation (ETFA),
volume 1, pages 254–261, 2020.
[5] T. Adame, M. Carrascosa, and B. Bellalta. Time‑ [17] U. Chunduri, A. Clemm, and R. Li. Preferred Path
Sensitive Networking in IEEE 802.11be: On Routing ‑ a next‑generation routing framework be‑
the way to low‑latency WiFi 7. arXiv preprint yond Segment Routing. In Proc. IEEE Global Com‑
arXiv:1912.06086, 2019. mun. Conf. (GLOBECOM), pages 1–7, Dec 2018.
[6] V. Addanki and L. Iannone. Moving a step forward [18] A. Cohen, D. Malak, V. B. Bracha, and M. Medard.
in the quest for Deterministic Networks (DetNet). Adaptive causal network coding with feedback for
In Proc. IFIP/IEEE Networking Conference (Network‑ delay and throughput guarantees. arXiv preprint
ing), pages 458–466, 2020. arXiv:1905.02870, 2019.
© International Telecommunication Union, 2021 29