通过先进的密钥管理和认证保护5G无线网络,增强数据保护

IF 1.7 4区 计算机科学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
V. Thirunavukkarasu, A. Senthil Kumar, G. Suresh, K. Suganyadevi
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引用次数: 0

摘要

5G技术的部署标志着无线通信的一个重要里程碑,它提供了无与伦比的速度、低延迟和通过物联网(IoT)连接数十亿设备的能力。然而,由于5G网络的复杂性和规模的增加,以及日益增长的威胁形势,这些进步带来了相当大的安全挑战。本文介绍了一种新的5G网络安全框架,通过创新的加密和认证解决方案解决这些挑战。通过将椭圆曲线加密(ECC)与抗量子算法相结合,该框架确保了安全的密钥管理,能够抵御未来出现的威胁,包括量子计算带来的威胁。此外,混合多因素身份验证系统,包括生物识别验证、一次性密码(otp)和相互身份验证,提供了一个强大的防御机制,防止未经授权的访问和身份欺骗。基于NS3的仿真结果表明,该模型具有优异的性能,准确率达到99.5%,延迟低至200 ms,在安全性和效率方面均优于传统方法。该框架还可以抵御常见的网络攻击,包括中间人攻击和重播攻击,确保对物联网生态系统、自动驾驶汽车和智慧城市等关键应用提供强大的保护。这种全面的方法不仅增强了数据保护和网络安全,还确保了可扩展性、适应性和能源效率,将框架定位为下一代通信系统及以后的关键解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Securing 5G Wireless Networks With Advanced Key Management and Authentication for Enhanced Data Protection

Securing 5G Wireless Networks With Advanced Key Management and Authentication for Enhanced Data Protection

The deployment of 5G technology marks a significant milestone in wireless communication, offering unparalleled speed, low latency, and the capacity to connect billions of devices through the Internet of Things (IoT). However, these advancements introduce considerable security challenges due to the increased complexity and scale of 5G networks, as well as the growing threat landscape. This paper introduces a novel security framework for 5G networks, addressing these challenges with innovative cryptographic and authentication solutions. By integrating elliptic curve cryptography (ECC) with quantum-resistant algorithms, the framework ensures secure key management that is future-proof against emerging threats, including those posed by quantum computing. Furthermore, the hybrid multifactor authentication system, encompassing biometric verification, one-time passwords (OTPs), and mutual authentication, provides a robust defense mechanism against unauthorized access and identity spoofing. Simulation results using NS3 demonstrate the model's superior performance, achieving 99.5% accuracy and low latency of 200 ms, surpassing traditional methods in both security and efficiency. The framework is further designed to withstand common cyberattacks, including man-in-the-middle and replay attacks, ensuring robust protection for critical applications like IoT ecosystems, autonomous vehicles, and smart cities. This comprehensive approach not only enhances data protection and network security but also ensures scalability, adaptability, and energy efficiency, positioning the framework as a critical solution for next-generation communication systems and beyond.

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来源期刊
CiteScore
5.90
自引率
9.50%
发文量
323
审稿时长
7.9 months
期刊介绍: The International Journal of Communication Systems provides a forum for R&D, open to researchers from all types of institutions and organisations worldwide, aimed at the increasingly important area of communication technology. The Journal''s emphasis is particularly on the issues impacting behaviour at the system, service and management levels. Published twelve times a year, it provides coverage of advances that have a significant potential to impact the immense technical and commercial opportunities in the communications sector. The International Journal of Communication Systems strives to select a balance of contributions that promotes technical innovation allied to practical relevance across the range of system types and issues. The Journal addresses both public communication systems (Telecommunication, mobile, Internet, and Cable TV) and private systems (Intranets, enterprise networks, LANs, MANs, WANs). The following key areas and issues are regularly covered: -Transmission/Switching/Distribution technologies (ATM, SDH, TCP/IP, routers, DSL, cable modems, VoD, VoIP, WDM, etc.) -System control, network/service management -Network and Internet protocols and standards -Client-server, distributed and Web-based communication systems -Broadband and multimedia systems and applications, with a focus on increased service variety and interactivity -Trials of advanced systems and services; their implementation and evaluation -Novel concepts and improvements in technique; their theoretical basis and performance analysis using measurement/testing, modelling and simulation -Performance evaluation issues and methods.
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