Smart Generation of 6G: Opportunities and Challenges
Author Affiliations
- 1Department of Electronics and Communication Engineering, Maharishi Markandeshwar (Deemed to be University), Mullana, Ambala, Haryana 133207, India
- 2Department of Electronics and Communication Engineering, Maharishi Markandeshwar (Deemed to be University), Mullana, Ambala, Haryana 133207, India
Res. J. Engineering Sci., Volume 14, Issue (1), Pages 22-33, January,26 (2025)
Abstract
Every ten years there has been a generation shift in communication. Although sixth generation wireless systems, which refer to as going beyond fifth generation (5G) systems are just starting to become a commercial reality. The newest innovations and cutting edge breakthrough in telecommunication network throughout previous period. The "Smart Generation of 6G" refers toward create and utilization for advanced technology, strategies, and frameworks that define Following a wave of technological advances in wireless communication, often referred to be the sixth generation. This conceptual encompasses the integration of various cutting-edge technology like quantum technology and intelligent machines, advanced signal processing, even innovative networking architectures to establish a highly intelligent, efficient, and responsive wireless network ecosystem. The "Smart Generation of 6G" encapsulates the forward-looking paradigm shift towards an intelligent, interconnected, and transformative communication landscape that will redefine industries, enable new applications, and drive unprecedented socio-economic progress. In this section, we provide a thorough analysis regarding the most lately advancements toward the sixth generation. While doing so emphasize both technical as well as social developments driving transition upwards of the sixth generation. Subsequently, new uses for meet the requirements generated Driven patterns using the sixth generation include examined. Additionally, I go into detail about the prerequisites needed to implement 6G apps. Then we thoroughly outline the major enabling technologies. Smart Generation of 6G focuses on the following key aspects: Ubiquitous Connectivity, Hyper-Fast Transmission Speeds and incredibly low Latencies, Intelligent Networking, Energies efficiency and Wavelength Analysis, Security as well as Privacy, Heterogeneous Integration, Global Collaboration And it has explain how the next generation of mobile network and the latest technology IoE are evolving and convergent leading to the birth dynamic 6th generation networks that will apply Artificial Intelligence, optimise, automate , solve challenges and opportunities.
References
- Giordani, M., Polese, M., Mezzavilla, M., Rangan, S., & Zorzi, M. (2020)., Toward 6G networks: Use cases and technologies., IEEE communications magazine, 58(3), 55-61.
- Button, K., & Rossera, F. (1990)., Barriers to communication: A literature review., The annals of regional science, 24, 337-357.
- Stüber, G. L., & Steuber, G. L. (2001)., Principles of mobile communication (Vol. 2, p. 752)., Boston: Kluwer academic.
- Ahmad, K., Kumar, S., & Shekhar, J. (2012)., Network Congestion Control in 4G Technology Through Iterative Server., International Journal of Computer Science Issues, 9(4), 343.
- Lee, H., Vahid, S., & Moessner, K. (2013)., A survey of radio resource management for spectrum aggregation in LTE-advanced., IEEE Communications Surveys & Tutorials, 16(2), 745-760.
- Popovski, P., Trillingsgaard, K. F., Simeone, O., & Durisi, G. (2018)., 5G wireless network slicing for eMBB, URLLC, and mMTC: A communication-theoretic view., Ieee Access, 6, 55765-55779.
- Alraih, S., Shayea, I., Behjati, M., Nordin, R., Abdullah, N. F., Abu-Samah, A., & Nandi, D. (2022)., Revolution or evolution? Technical requirements and considerations towards 6G mobile communications., Sensors, 22(3), 762.
- Ho, T. M., Tran, T. D., Nguyen, T. T., Kazmi, S. M., Le, L. B., Hong, C. S., & Hanzo, L. (2019)., Next-generation wireless solutions for the smart factory, smart vehicles, the smart grid and smart cities., arXiv preprint arXiv:1907.10102.
- Yang, P., Xiao, Y., Xiao, M., & Li, S. (2019)., 6G wireless communications: Vision and potential techniques., IEEE network, 33(4), 70-75.
- Nawaz, S. J., Sharma, S. K., Wyne, S., Patwary, M. N., & Asaduzzaman, M. (2019)., Quantum machine learning for 6G communication networks: State-of-the-art and vision for the future., IEEE access, 7, 46317-46350.
- Rappaport, T. S., Xing, Y., Kanhere, O., Ju, S., Madanayake, A., Mandal, S., ... & Trichopoulos, G. C. (2019)., Wireless communications and applications above 100 GHz: Opportunities and challenges for 6G and beyond., IEEE access, 7, 78729-78757.
- Vaigandla, K. K., Bolla, S., & Karne, R. (2021)., A survey on future generation wireless communications-6G: requirements, technologies, challenges and applications., International Journal, 10(5).
- Yaacoub, E., & Alouini, M. S. (2020)., A key 6G challenge and opportunity—Connecting the base of the pyramid: A survey on rural connectivity., Proceedings of the IEEE, 108(4), 533-582.
- Vaigandla, K. K., & Venu, D. N. (2021)., A survey on future generation wireless communications-5G: multiple access techniques, physical layer security, beamforming approach., Journal of Information and Computational Science, 11(9), 449-474.
- Khan, L. U., Yaqoob, I., Imran, M., Han, Z., & Hong, C. S. (2020)., 6G wireless systems: A vision, architectural elements, and future directions., IEEE access, 8, 147029-147044.
- Mozaffari, M., Kasgari, A. T. Z., Saad, W., Bennis, M., & Debbah, M. (2018)., Beyond 5G with UAVs: Foundations of a 3D wireless cellular network., IEEE Transactions on Wireless Communications, 18(1), 357-372.
- Imoize, A. L., Adedeji, O., Tandiya, N., & Shetty, S. (2021)., 6G enabled smart infrastructure for sustainable society: Opportunities, challenges, and research roadmap., Sensors, 21(5), 1709.
- Banks, B., Harms, T., Sarvestani, S. S., & Bastianini, F. (2009)., A low-cost wireless system for autonomous generation of road safety alerts., In Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems 2009 (Vol. 7292, pp. 120-127). SPIE.
- Sum, C. S., Harada, H., Kojima, F., & Lu, L. (2013)., An interference management protocol for multiple physical layers in IEEE 802.15., 4g smart utility networks. IEEE Communications Magazine, 51(4), 84-91.
- Xue, Q., Ji, C., Ma, S., Guo, J., Xu, Y., Chen, Q., & Zhang, W. (2024)., A survey of beam management for mmWave and THz communications towards 6G., IEEE Communications Surveys & Tutorials.
- Salameh, A. I., & El Tarhuni, M. (2022)., From 5G to 6G—challenges, technologies, and applications., Future Internet, 14(4), 117.
- Dilli, R. (2022)., Design and feasibility verification of 6G wireless communication systems with state of the art technologies., International Journal of Wireless Information Networks, 29(1), 93-117.
- Bakken, D. E., Bose, A., Hauser, C. H., Whitehead, D. E., & Zweigle, G. C. (2011)., Smart generation and transmission with coherent, real-time data., Proceedings of the IEEE, 99(6), 928-951.
- Blogh, J. S., & Hanzo, L. L. (2002)., Third-generation systems and intelligent wireless networking: smart antennas and adaptive modulation., John Wiley & Sons.
- Janbi, N., Katib, I., Albeshri, A., & Mehmood, R. (2020)., Distributed artificial intelligence-as-a-service (DAIaaS) for smarter IoE and 6G environments., Sensors, 20(20), 5796.
- Liu, D., Xu, Y., Wang, J., Chen, J., Yao, K., Wu, Q., & Anpalagan, A. (2020)., Opportunistic UAV utilization in wireless networks: Motivations, applications, and challenges., IEEE Communications Magazine, 58(5), 62-68.
- Portilla, J., Mujica, G., Lee, J. S., & Riesgo, T. (2019)., The extreme edge at the bottom of the Internet of Things: A review., IEEE Sensors Journal, 19(9), 3179-3190.
- Fraga-Lamas, P., Fernandez-Carames, T. M., Blanco-Novoa, O., & Vilar-Montesinos, M. A. (2018)., A review on industrial augmented reality systems for the industry 4.0 shipyard., Ieee Access, 6, 13358-13375.
- Bhat, J. R., & Alqahtani, S. A. (2021)., 6G ecosystem: Current status and future perspective., IEEE Access, 9, 43134-43167.