Requirements to the tactile Internet and approaches for implementation
DOI:
https://doi.org/10.33919/YTelecomm.22.9.2Keywords:
tactile Internet, requirements for tactile Internet, protocols for tactile InternetAbstract
The aim of this paper is to outline the specifics of network service parameters, as well as the basic technical requirements for the tactile Internet based on mobile networks, which are the basis for developing its system and functional architecture, components and interactions in architecture. The accepted interfaces in the tactile Internet network are given and an analysis of protocols proposed for use for tactile Internet is made. The results are related to the differentiation of the features of architecture, interfaces and protocols of the tactile Internet. Contributions from the work are the comprehensive consideration and analysis of the development of the tactile Internet, outlining some possible current directions of research, as well as existing highlights and open questions.
References
The Tactile Internet: ITU-T Technology Watch Report August 2014. ITU [online]. Geneva, 2014 [viewed November 2020]. Available from: https://www.itu.int/dms_pub/itu-t/oth/23/01/T23010000230001PDFE.pdf
СИМЕОНОВА, Цветелина. Развитие на перспективните технологии в „Интернет на свързаните неща“ IoT (Internet of Things). София: Асеневци, 2021. ISBN 978-619-7586-25-1. [SIMEONOVA, Tsvetelina. Razvitie na perspektivnite tehnologii v „Internet na svarzanite neshta“ IoT (Internet of Things). Sofia: Asenevtsi, 2021. ISBN 978-619-7586-25-1.]
ПАСАРЕЛСКИ, Росен и Теодора ПАСАРЕЛСКА. Анализ, мониторинг и контрол на мрежовия трафик в интернет. Сборник доклади от Годишна университетска научна конференция 03 - 04 юли 2014 г. на Национален военен университет „Васил Левски“: Научно направление „Технически науки“. Т. 9. Велико Търново: ИК на НВУ „Васил Левски, 2014, с. 53-66. ISSN 1314-1937.[ PASARELSKI, R. i T. PASARELSKA. Analiz, monitoring i kontrol na mrezhovia trafik v internet. Sbornik dokladi ot Godishna universitetska nauchna konferentsia 03 - 04 yuli 2014 g. na Natsionalen voenen universitet „Vasil Levski“: Nauchno napravlenie „Tehnicheski nauki“. T. 9. Veliko Tarnovo: IK na NVU „Vasil Levski, 2014, s. 53-66. ISSN 1314-1937.]
ПЕТРОВ, Георги Костадинов. Развитие на Интернет и отворените системи. Ч. 1. София: Авангард Прима, 2017. ISBN 978-619-160-834-8. [PETROV, Georgi Kostadinov. Razvitie na Internet i otvorenite sistemi. Ch. 1. Sofia: Avangard Prima, 2017. ISBN 978-619-160-834-8.]
IVANOVA, Yoana. Assessment of the probability of cyberattacks on transport management systems. Publication of Union of Scientists in Bulgaria. International Journal on Information Technologies and Security (IJITS) [online]. 2018, vol. 10(4), pp. 99-106 [viewed 10 January 2023]. ISSN 1313-8251. Available from: https://ijits-bg.com/contents/IJITS-No4-2018/2018-N4-10.pdf
New Services and Capabilities for Network 2030: Description, Technical Gap and Performance Target Analysis. Focus Group on Technologies for Network 2030. International Telecommunication Union [online]. 2019 [viewed November 2020]. Available from: https://www.itu.int/en/ITUT/focusgroups/net2030/Documents/Deliverable_NET2030.pdf
HOLLAND, O., et al. The IEEE 1918.1 „Tactile Internet“ Standards Working Group and its Standards. Proceedings of the IEEE [online]. 2019, vol. 107(2), pp. 256-279 [viewed January 2023]. ISSN 0018-9219. Available from: DOI 10.1109/JPROC.2018.2885541
SHARMA, Shree Krishna, Isaac WOUNGANG, Alagan ANPALAGAN, and Symeon CHATZINOTAS. Towards Tactile Internet in Beyond 5G Era: Recent Advances, Current Issues and Future Directions. IEEE Access [online]. 2020, vol. 8, pp. 56948 - 56991 [viewed 10 January 2023]. ISSN 2169-3536. Available from: https://ieeexplore.ieee.org/document/9034103
SIMSEK, M., A. AIJAZ, M. DOHLER, J. SACHS, and G. FETTWEIS. 5G-enabled tactile internet. IEEE Journal on Selected Areas in Communications [online]. 2016, vol. 34(3), pp. 460-473 [viewed 18 January 2023]. eISSN 1558-0008. Available from: DOI: 10.1109/JSAC.2016.2525398
ANTONAKOGLOU, K. et al. Toward haptic communications over the 5G tactile internet. IEEE Communications Surveys Tutorials [online]. 2018, vol. 20(4), pp. 3034-3059 [viewed 18 January 2023]. еISSN 1553-877X. Available from: DOI: 10.1109/COMST.2018.2851452
LI, C. et al. 5G-based systems design for tactile internet. Proceedings of the IEEE [online]. 2019, vol. 107(2), pp. 307-324 [viewed 18 January 2023]. еISSN 1558-2256. Available from: DOI: 10.1109/JPROC.2018.2864984
YILMAZ, O. N. C. et al. Analysis of ultra-reliable and low-latency 5G communication for a factory automation use case. IEEE International Conference on Communication Workshop (ICCW) [online]. 2015, pp. 1190-1195 [viewed 18 January 2023]. ISSN 2164-7038. Available from: DOI: 10.1109/ICCW.2015.7247339
Tactile Internet. IEEE Standard 1918.1. Standards Working Group [online]. July 2016 [viewed 18 January 2023]. Available from: http://ti.standards.comsoc.org
Tactile Internet. Standard IEEE 1918.1. Project Authorization Request, Standards Working Group [online]. January 2016 [viewed 18 January 2023]. Available from: https://development.standards.ieee.org/getfile/P1918.1.pdf?t=88785900003
GOKHALE, V., S. CHAUDHURI, and O. DABEER. HoIP: A Point-to-Point Haptic Data Communication Protocol and Its Evaluation. Twenty First National Conference on Communications (NCC) [online]. March 2015. [viewed 18 January 2023]. ISBN 978-1-4799-6619-6. Available from: https://ieeexplore.ieee.org/document/7084908
MONNET, W. and T. YAHIYA. HoIP Performance for Tactile Internet over 5G Networks: A Teleoperation Case Study. 11th International Conference on Network of the Future (NoF) [online]. October 2020 [viewed 18 January 2023]. ISBN 978-1-7281-8055-7. Available from: DOI: 10.1109/NoF50125.2020.9249097
OSMAN, H. A., M. EID, and A. El SADDIK. Evaluating ALPHAN: A Communication Protocol for Haptic Interaction. Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems [online]. 31 March 2008 [viewed 18 January 2023]. ISBN 978-1-4244-2005-6. Available from: DOI: 10.1109/HAPTICS.2008.4479972
SARATHCHANDRA, C., K. HAENSGE, S. ROBITZSCH, M. GHASSEMIAN, and U. OLVERAHERNANDEZ. Enabling Bi-directional Haptic Control in Next Generation Communication Systems: Research, Standards, and Vision. IEEE Conference on Standards for Communications and Networking (CSCN) [online]. 28 January 2022 [viewed 18 January 2023]. eISBN 978-1-6654-2349-6. Available from: https://arxiv.org/pdf/2104.04297.pdf
TACTILENet, Towards Agile, effiCient, auTonomous and massIvely LargE Network of things. European Commission. CORDIS EU Research Results [online]. [viewed 18 January 2023]. Available from: https://cordis.europa.eu/project/id/690893