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THE IMPORTANCE AND DEVELOPMENT OF TELECOMMUNICATION NETWORKS

Field of Science:Artificial IntelligenceComputational Theory and MathematicsComputer Graphics and Computer-Aided DesignComputer Networks and CommunicationsInformation SystemsSignal ProcessingSoftware
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ARTICLE ANNOTATION

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Telecommunication networks are experiencing rapid evolution, driven by emerging technologies, increasing user demand, and global digital transformation. Telecommunication networks have become the foundational infrastructure of modern digital societies, enabling communication, economic activity, governance, and access to essential services. This article analyzes the current status, challenges, and future prospects of telecom networks globally and regionally, with a focus on enabling technologies, regulatory frameworks, infrastructure readiness, and socio-economic impacts.

AUTHORS

Science ID: FTN-0526-0075

U.Abdullaev

O`ZBEKISTON RESPUBLIKASI RAQAMLI TEXNOLOGIYALAR VAZIRLIGI HUZURIDAGI SUN`IY INTELLEKT VA RAQAMLI IQTISODIYOTNI RIVOJLANTIRISH MARKAZI

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# and# intelligence# digital# network# infrastructure# future# 5g# 6g# networks# economic# telecommunication# productivity# divide# connectivity

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References

1. Lars-Hendrik Roller & Leonard Waverman, 2001. "Telecommunications Infrastructure and Economic Development: A Simultaneous Approach," American Economic Review, American Economic Association, vol. 91(4), pages 909-923, September. https://ideas.repec.org/a/aea/aecrev/v91y2001i4p909-923.html 2. “World Bank. 2020. Embedding Digital Finance in e-Commerce Platforms during the COVID-19 Pandemic: Early Assessment of the Impact of COVID-19 on e Commerce and the Provision of Digital Financial Services for Micro, Small, and Medium Enterprises and Low-Income Consumers. © World Bank. http://hdl.handle.net/10986/35001 License: CC BY 3.0 IGO.”. 3. Gupta, Akhil & Jha, Rakesh. (2015). A Survey of 5G Network: Architecture and Emerging Technologies. 10.1109/ACCESS.2015.2461602. Access, IEEE. 3. 1206-1232. 4. Dang, Shuping & Alouini, Mohamed-Slim & Shihada, Basem. (2022). Pre 6G Graduate Education of Communications Engineering. Frontiers in Communications and Networks. 2. 10.3389/frcmn.2021.798880.

5. Hilbert, Martin. (2016). The bad news is that the digital access divide is here to stay: Domestically installed bandwidths among 172 countries for 1986–2014. Telecommunications Policy. 40. 10.1016/j.telpol.2016.01.006. 6. Lu, S., Liu, F., Li, Y., Zhang, K., Huang, H., Zou, J., Li, X., Dong, Y., Xiong, Y., Dong, F., Zhu, J., Yuan, Y., Cui, Y., & Hanzo, L. (2023). Integrated Sensing and Communications: Recent Advances and Ten Open Challenges. arXiv:2305.00179. arXiv 7. Alam, Mohammad & Siddiqui, Shams & Qidwai, Khalid & Aftab, Aasif & Kamal, Mohammad & Shahi, Fazal. (2024). Evolution of Wireless Communication Networks from 5G to 6G: Future Perspective. Radioelectronics and Communications Systems. 66. 213-222. 10.3103/S0735272723050047. 8. E.pdf https://www.itu.int/dms_pub/itu-d/opb/stg/D-STG-SG02.02.3-2021-PDF 9. https://www.iea.org/reports/energy-and-ai 10. https://www.oulu.fi/en/research/6g-solutions-for-data-driven-society 11.https://developingtelecoms.com/telecom-business/telecom regulation/19042-3-1-billion-people-remain-offline-despite-mobile-internet coverage.html