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LEGA: A Lightweight and Efficient Group Authentication Protocol for Massive Machine Type Communication in 5G Networks

机译:LEGA:用于5G网络中的大型机器类型通信的轻量级和高效的组认证协议

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摘要

Massive machine type communication (mMTC) is anticipated to be an essential part of fifth generation (5G) networks. The main challenge for mMTC devices (mMTCDs) is the design of an access authentication scheme that can fulfill the security and privacy requirements of 5G applications, which have specific conditions, including rigorous latency and simultaneous access. Thus, a novel 5G authentication and key agreement (5G-AKA) protocol was introduced by the 3rd generation partnership project (3GPP) to achieve mMTCD access authentication. However, 5G-AKA protocol comes with some security vulnerabilities and significant delay for real-time mMTC applications, particularly when mMTCDs concurrently roam into new networks. In order to address the real-time secure and efficient access issues of multiple mMTCDs, this paper proposes a lightweight and efficient group authentication protocol for mMTC in 5G wireless networks. The proposed protocol, which integrates bilinear maps and an aggregate certificateless signature mechanism, can achieve several security goals, including avoidance of signaling congestion in the authentication process, mutual authentication, session key agreement, perfect forward/backward secrecy, and masked attack and key escrow resistance. Compared to existing conventional protocols, the proposed protocol demonstrates robust security and improved performance in terms of signaling cost authentication, bandwidth consumption and computational cost.
机译:大量机床类型通信(MMTC)预计将成为第五代(5G)网络的重要组成部分。 MMTC设备(MMTCD)的主要挑战是可以满足5G应用程序的安全性和隐私要求的访问身份验证方案,包括具体的条件,包括严格的延迟和同时访问。因此,第三代合作伙伴计划(3GPP)引入了新颖的5G认证和关键协议(5G-AKA)协议,以实现MMTCD访问身份验证。但是,5G-AKA协议随附一些安全漏洞和实时MMTC应用程序的显着延迟,特别是当MMTCD同时漫游到新网络时。为了解决多MMTCD的实时安全和有效的访问问题,本文提出了用于5G无线网络中MMTC的轻量级和有效的组认证协议。集成了Bilinear映射的拟议协议和集合可无证签名机制,可以实现若干安全目标,包括避免认证过程中的信令拥塞,相互认证,会话密钥协议,完善的前向/后向保密以及屏蔽攻击和屏幕攻击和主要托管抵抗性。与现有的传统协议相比,所提出的协议在信令成本认证,带宽消耗和计算成本方面表现出强大的安全性和改进的性能。

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