Enhancing the Performance Parameters of 5G Network Reliability for Emergency Services
Authors
Ashish Mishra
Electronics and Communication Engineering Department, RKDF University, Gandhinagar, Bhopal (IN)
Dr. Ratnesh Kumar Jain
Electronics and Communication Engineering Department, RKDF University, Gandhinagar, Bhopal (IN)
Article Information
DOI: 10.51583/IJLTEMAS.2025.1408000072
Subject Category: Electronics and communication
Volume/Issue: 14/8 | Page No: 583-585
Publication Timeline
Submitted: 2025-09-09
Published: 2025-09-09
Abstract
Abstract: With the proliferation of 5G networks, emergency services have the opportunity to leverage high-speed, low-latency communication systems. However, the reliability of 5G under crisis conditions remains a critical concern. This study investigates the reliability of 5G networks in emergency scenarios, evaluates the performance and limitations of current infrastructure, and explores mechanisms to enhance resilience and responsiveness. Using both simulation and real-world deployment data, we analyze failure modes, latency behaviors, and redundancy strategies. Our findings provide guidelines for network providers and emergency response organizations to optimize 5G deployment for mission-critical applications and shows the ways to enhance the performance parameters for 5G Network Reliability.
Keywords
Electronics and communication
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References
1. W. Iqbal et al. “Adaptive resource provisioning for read-intensive multi-tier applications in the cloud”, Future Generation Computer Systems (2011) [Google Scholar] [Crossref]
2. V. Hayyolalam et al, ”A systematic literature review on QoS-aware service composition and selection in cloud environment”, J. Network Computer Applications (2018) [Google Scholar] [Crossref]
3. D. Hutchison et al. “Architecture and design for resilient networked systems” Computer. Communication (2018) [Google Scholar] [Crossref]
4. J.P. Sterbenz, “Resilience and survivability in communication networks: Strategies, principles, and survey of disciplines” Computer Networking, (2010) [Google Scholar] [Crossref]
5. J.Y. Sheng et al. A hierarchical coloured Petri Net model of fleet maintenance with cannibalisation Reliab. Eng. Syst. Saf. 2017 [Google Scholar] [Crossref]
6. X.-Y. Li et al. A geneation and management of cloud data centers Rel. Eng. Syst. Saf (2021) [Google Scholar] [Crossref]
7. F.Z. Yousaf et al. NFV and SDN —Key technology enablers for 5G networks IEEE J. Sel. Areas Commun. 2017) [Google Scholar] [Crossref]
8. S. Sotiriadis et al. Elastic load balancing for dynamic virtual machine reconfiguration based on vertical and horizontal scaling IEEE Trans. Serv. Comput. (2019) [Google Scholar] [Crossref]
9. Bauer et al. Chameleon: A hybrid, proactive auto-scaling mechanism on a level-playing field IEEE Trans. Parallel Distrib. Syst. (2019) [Google Scholar] [Crossref]
10. J. Rak et al. Guide to Disaster-Resilient Communication Networks (2020) [Google Scholar] [Crossref]
11. L. De Simone et al. Performance and availability challenges in designing resilient 5G architectures IEEE Trans. Netw. Serv. Manag. (2024) [Google Scholar] [Crossref]
12. Y. Li et al. Availability and reliability of service function chain: A quantitative evaluation view Int. J. Comput. Intell. Syst. (2023) [Google Scholar] [Crossref]
13. L. De Simone et al. A latency-driven availability assessment for multi-tenant service chains IEEE Trans. Serv. Comput. (2022) [Google Scholar] [Crossref]
14. J. Bai et al. Impact of service function aging on the dependability for MEC service function chain IEEE Trans. Dependable Secure Comput. (2022) [Google Scholar] [Crossref]
15. IMT-2030(6G) promotion group formally released the white paper “6G overall vision and potential key technologies” Internet World (2021) [Google Scholar] [Crossref]
16. Mauthe, et al., Disaster-resilient communication networks: Principles and best practices, in: Proc. 8th Int.... [Google Scholar] [Crossref]
17. J. Clerk Maxwell A Treatise on Electricity and Magnetism (1892) [Google Scholar] [Crossref]
18. P. Huber, K. Jensen, R.M. Shapiro, Hierarchies in Coloured Petri Nets, in: Proc.International Conference on Application... [Google Scholar] [Crossref]
19. Y.A. Katsigiannis et al. A novel colored fluid stochastic Petri Net simulation model for reliability evaluation of wind/PV/Diesel small isolated power systems IEEE Trans. Syst. Man Cybern. A (2010) [Google Scholar] [Crossref]
20. E. Kucera, B. Hruz, Modelling of Automated Storage Systems Using Hierarchical Coloured Petri Nets, in: Proc. IEEE 15th... [Google Scholar] [Crossref]
21. L. Rui et al. Petri Net-based reliability assessment and migration optimization strategy of SFC IEEE Trans. Netw. Serv. Manag. (2021) [Google Scholar] [Crossref]
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