Research on Remote eSIM Provisioning Management Technology for 5G Terminal

Authors

  • Jun Lu Information and Communication Branch of State Grid Anhui Electric Power Co., Ltd., Hefei, China
  • Guowei Huang Information and Communication Branch of State Grid Anhui Electric Power Co., Ltd., Hefei, China
  • Wenke Kuai Information and Communication Branch of State Grid Anhui Electric Power Co., Ltd., Hefei, China
  • Yiliang Xu Information and Communication Branch of State Grid Anhui Electric Power Co., Ltd., Hefei, China

DOI:

https://doi.org/10.13052/jicts2245-800X.1221

Keywords:

5G terminal, eSIM, remote, management.

Abstract

The use of eSIM in mobile terminals such as the Internet of Vehicles has become the general trend, and more and more enterprises have put forward clear requirements for the remote provisioning of eSIM. This paper aims to combine 5G technology to analyze remote eSIM provisioning management technology for terminal, and combine algorithm improvement to improve remote eSIM information management and control effects. Moreover, this paper describes in detail the three-layer communication structure in the communication model, the design of edge gateway nodes, and the query mechanism for cloud center request names and data resources. In addition, this paper uses experiments to evaluate the connectivity of the eSIM three-layer communication model and the characteristics of the NDN network. Through experimental research, it can be seen that the remote eSIM provisioning management model proposed in this paper has certain advantages when applied to the Internet of Vehicles compared with the existing remote provisioning management technologies for the Internet of Vehicles. This article takes the Internet of Vehicles as an example to conduct research. At the same time, its support for mobility can be well applied to the Internet of Vehicles to meet the mobility of terminal vehicles. Therefore, it can provide some reference in the subsequent development of Internet of Vehicles technology.

Downloads

Download data is not yet available.

Author Biographies

Jun Lu, Information and Communication Branch of State Grid Anhui Electric Power Co., Ltd., Hefei, China

Jun Lu was born in Hefei, Anhui Province, master degree candidate in University of Science and Technology of China, senior engineer, main research interests: 5G communication, wireless communication, power communication.

Guowei Huang, Information and Communication Branch of State Grid Anhui Electric Power Co., Ltd., Hefei, China

Guowei Huang was born in Bozhou, Anhui Province, master degree candidate in Central South University, junior engineer, main research interests: power communication, data communication network, signal processing.

Wenke Kuai, Information and Communication Branch of State Grid Anhui Electric Power Co., Ltd., Hefei, China

Wenke Kuai was born in Hefei, Anhui Province, master degree candidate in University of Science and Technology of China, junior engineer, main research interests: power communication, data communication network, signal processing.

Yiliang Xu, Information and Communication Branch of State Grid Anhui Electric Power Co., Ltd., Hefei, China

Yiliang Xu, master, he was born in Anqing, Anhui Province, master degree candidate in University of Electronic Science and Technology of China, junior engineer, main research interests: power communication, optical transmission, signal processing.

References

S. A. Abdel Hakeem, A. A. Hady, and H. Kim, ‘Current and future developments to improve 5G-NewRadio performance in vehicle-to-everything communications’, Telecommunication systems, 75(3), 331–353, 2020.

O. Apilo, P. Karhula, and J. Mäkelä, ‘eSIM-based inter-operator mobility for advanced smart products’, IEEE Internet of Things Magazine, 5(2), 120–126, 2022.

R. Borgaonkar, I. Anne Tøndel, M., Zenebe Degefa, and M. Gilje Jaatun, ‘Improving smart grid security through 5G enabled IoT and edge computing’, Concurrency and Computation: Practice and Experience, 33(18), e6466–e6475, 2021.

C. Casetti, ‘The Lively Versatility of the 5G Ecosystem [Mobile Radio]’, IEEE Vehicular Technology Magazine, 17(2), 4–13, 2022.

V. Demirev, ‘World Radiocommunication Conference WRC ‘19–Impact over security of the modern human society’, Security & Future, 4(2), 72–74, 2020.

S. Dymkova, ‘Applicability of 5G subscriber equipment and global navigation satellite systems’, Synchroinfo Journal, 7(5), 36–48, 2021.

C. I., Fan, Y. T. Shih, J. J. Huang, and W. R. Chiu, ‘Cross-network-slice authentication scheme for the 5th generation mobile communication system’, IEEE Transactions on Network and Service Management, 18(1), 701–712, 2021.

W. He, B. Xu, L. Scialacqua, Z. Ying, A. Scannavini, L. J. Foged, … and S. He, ‘Fast power density assessment of 5G mobile handset using equivalent currents method’, IEEE Transactions on Antennas and Propagation, 69(10), 6857–6869, 2021.

E. Ibarrola, K. Jakobs, M. H. Sherif, and D. Sparrell, ‘The Evolution of Telecom Business, Economy, Policies and Regulations’, IEEE Communications Magazine, 61(7), 16–17, 2023.

A., Khalid, F. Rashid, U. Tahir, H. M. Asif, and F. Al-Turjman, ‘Multi-carrier visible light communication system using enhanced sub-carrier index modulation and discrete wavelet transform’, Wireless Personal Communications, 127(1), 187–215, 2022.

H. K. Kim, Y. Cho, and H. S. Jo, ‘Adjacent channel compatibility evaluation and interference mitigation technique between earth station in motion and IMT-2020’, IEEE Access, 8(5), 213185–213205, 2020.

X. Lin, S. Cioni, G. Charbit, N. Chuberre, S. Hellsten, and J. F. Boutillon, ‘On the path to 6G: Embracing the next wave of low Earth orbit satellite access’, IEEE Communications Magazine, 59(12), 36–42, 2021.

M. Luglio, M. Quadrini, C. Roseti, and F. Zampognaro, ‘Modes and models for satellite integration in 5G networks’, IEEE Communications Magazine, 61(4), 50–56, 2022.

W. Mao, Z. Zhao, Z. Chang, G. Min, and W. Gao, ‘Energy-efficient industrial internet of things: Overview and open issues’, IEEE transactions on industrial informatics, 17(11), 7225–7237, 2021.

H. D. S. Medeiros, L. de Souza Bezerra, F. T. España, and J. T. S. de Oliveira, ‘Embedded-SIM (E-SIM) an overview in Latin America: implementation, availability, advantages and disadvantages’, Journal of Communication and Information Systems, 39(1), 46–57, 2024.

L. Mishra, et al. ‘Seamless health monitoring using 5G NR for internet of medical things’, Wireless Personal Communications, 120(3), 2259–2289, 2021.

G. Praveen, V. Chamola, V. Hassija, and N. Kumar, ‘Blockchain for 5G: A prelude to future telecommunication’, IEEE Network, 34(6), 106–113, 2020.

J. Suomalainen, J. Julku, M. Vehkaperä, and H. Posti, ‘Securing public safety communications on commercial and tactical 5G networks: A survey and future research directions’, IEEE Open Journal of the Communications Society, 2(1), 1590–1615, 2021.

S. D. Tusha, A. Tusha, E. Basar, and H. Arslan, ‘Multidimensional index modulation for 5G and beyond wireless networks’, Proceedings of the IEEE, 109(2), 170–199, 2020.

O. Vikhrova, S. Pizzi, A. Terzani, L. Araujo, A. Orsino, and G. Araniti, ‘Multi-sim support in 5G evolution: Challenges and opportunities’, IEEE Communications Standards Magazine, 6(2), 64–70, 2022.

Downloads

Published

2024-10-26

How to Cite

Lu, J. ., Huang, G. ., Kuai, W. ., & Xu, Y. . (2024). Research on Remote eSIM Provisioning Management Technology for 5G Terminal. Journal of ICT Standardization, 12(02), 135–162. https://doi.org/10.13052/jicts2245-800X.1221

Issue

Section

Intelligent System Concepts, architecture, standards, tools and applications

Most read articles by the same author(s)