Commercial Mobile Alert System LTE & 5g Network Optimization

Authors

  • Ritesh Patel
  • Jigar Patel

DOI:

https://doi.org/10.47941/ijce.1664

Keywords:

Commercial, Mobile, Alert, System, Network, Optimization

Abstract

Purpose: The evolution of telecommunication networks, spanning from LTE to 5G (NR) and WCDMA, has significantly transformed the landscape, extending the reach and capabilities of connectivity. While these networks have made substantial strides in enhancing the reliability of mobile communication, challenges persist in achieving optimal connectivity for the Commercial Mobile Alert System (CMAS).

Methodology: This research investigates the reliability and methodologies of the CMAS, delving into real-world challenges and proposing network optimization solutions aimed at fortifying the effectiveness of CMAS in both 5G and LTE networks.

Findings: The study endeavors to address these practical concerns, striving to elevate the LTE and 5G network infrastructure for CMAS

Unique contributor to theory, policy and practice:  thereby contributing to the enhancement of public safety measures.

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References

Ballakur, R., Das, S. K., Persson, C. G., Badanidiyur, S. R., & Schliwa-Bertling, P. (2015). U.S. Patent Application No. 14/438,892.

Bean, H. (2019). Mobile technology and the transformation of public alert and warning. Bloomsbury Publishing USA.

Bergqvist, J., Bergman, J. and Määttanen, H.L., Telefonaktiebolaget LM Ericsson AB, 2021. Methods, network node, and wireless device for communicating and obtaining system information in a FEMBMS system. U.S. Patent 11,191,008.

Bitsikas, E., & Pöpper, C. (2022, December). You have been warned: Abusing 5 G's Warning and Emergency Systems. In Proceedings of the 38th Annual Computer Security Applications Conference (pp. 561-575).

Campus Safety. (2012, April 17). The Truth About CMAS: Benefits and Limitations. Campus Safety Magazine. https://www.campussafetymagazine.com/technology/the-truth-about-cmas-benefits-and-limitations/

Da Silva, I.L., Eriksson, E., Frenger, P., Mildh, G., Palenius, T., Pradas, J.L. and Rune, J., Telefonaktiebolaget LM Ericsson AB, 2019. Controlling access to a wireless communication network. U.S. Patent 10,506,494.

ETSI. (2018). Digital cellular telecommunications system (Phase 2+) (GSM); Universal Mobile Telecommunications System (UMTS); Technical realization of Cell Broadcast Service (CBS) (3GPP TS 23.041 version 15.2.0 Release 15) https://www.etsi.org/deliver/etsi_ts/123000_123099/123041/15.02.00_60/ts_123041v150200p.pdf

ETSI. (2020). Work Programme - Work Item Detailed Report. Portal.etsi.org. https://portal.etsi.org/webapp/workprogram/Report_WorkItem.asp?WKI_ID=60143

Federal Communications Commission. Wireless Emergency Alerts. Federal Communications Commission. https://www.fcc.gov/public-safety-and-homeland-security/policy-and-licensing-division/alerting/general/wireless

Gunnarsson, F., Palm, H., Shreevastav, R. and Razavi, S.M., Telefonaktiebolaget LM Ericsson AB, 2022. A Radio Network Node, a Wireless Device, and Methods Therein for Scheduling Positioning System Information Block (SIB). U.S. Patent Application 17/432,294.

Kim, Y. B., Abhimanyu, I. M., Van Lieshout, G. J., Kwak, Y. J., Yeo, J. H., & Lee, J. H. (2022). U.S. Patent No. 11,382,081. Washington, DC: U.S. Patent and Trademark Office.

Kumar, U., Burroughs, K. A., & Miller, S. J. (2022). U.S. Patent Application No. 17/901,588.

Lee, K.D., Chun, S. and Sanggook, K.I.M., LG Electronics Inc, 2020. Method and apparatus for transceiving a warning message in a wireless communication system. U.S. Patent 10,531,268.

McGrath, C., De, S.K., Bhattacharjee, A., Budhathoki, K.R., Huber, M.K., Luu, B. and Muppalla, S.E.P., Qualcomm Inc, 2021. Detecting and Responding to Unauthorized Emergency Messages and Presidential Alerts. U.S. Patent Application 16/737,230.

Park, C., Kim, J., Hyunjung, C.H.O.E., and Joonkui, A.H.N., LG Electronics Inc, 2022. Method for transmitting or receiving emergency information in a wireless communication system supporting machine type communication and device therefor. U.S. Patent Application 17/629,328.

Sangyeob, J.U.N.G., Soenghun, K.I.M., Agiwal, A. and Hyunjeong, K.A.N.G., Samsung Electronics Co Ltd, 2022. Handover method and device for a terminal that supports dual active protocol stack in a mobile communication system. U.S. Patent Application 17/634,387.

Schmidt, A., Luft, A., Bienas, M., & Hans, M. (2022). U.S. Patent Application No. 17/417,770.

Shrestha, B., Tarradell, M.M., Lim, S.S. and Chatterjee, D., Apple Inc, 2022. Notification and acquisition of etws/cmas in connected mode for ues in ce. U.S. Patent Application 17/441,447

Techplayon. (2023). 5G CMAS – Commercial Mobile Alert Service. Techplayon. https://www.techplayon.com/5g-cmas-commercial-mobile-alert-service/

Zhang, H., Telefonaktiebolaget LM Ericsson AB, 2021. Network node, mbms node, and methods performed therein. U.S. Patent Application 17/272,326.

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Published

2023-03-03

How to Cite

Patel, R., & Patel, J. (2023). Commercial Mobile Alert System LTE & 5g Network Optimization. International Journal of Computing and Engineering, 4(2), 40–50. https://doi.org/10.47941/ijce.1664

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Articles