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首页> 外文期刊>Wireless personal communications: An Internaional Journal >DGBES: Dynamic Group Based Efficient and Secure Authentication and Key Agreement Protocol for MTC in LTE/LTE-A Networks
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DGBES: Dynamic Group Based Efficient and Secure Authentication and Key Agreement Protocol for MTC in LTE/LTE-A Networks

机译:DGBES:用于LTE / LTE-A网络中MTC的动态组高效和安全认证和密钥协议协议

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摘要

The machine to machine communication (MTC) has grown into one of the fastest expansion in the area of Information and Communication Technology and is one of the important aspect of the Internet of Things. It allows millions of devices to connect with each other over the internet. MTC has a huge market and massive strength to obtain numerous application scenarios. The applications of MTC are reliable and effective only after a successful authentication of MTC devices. Hence, there are several group based authentication and key agreement (AKA) protocols were proposed by researchers. Whenever a number of MTC devices simultaneously generate the access request to the LTE/LTE-A network, each MTC device needs a separate authentication process to access the core network that leads to genuine signaling congestion problem. In addition, the existing group based AKA protocols did not equip with the group management scheme efficiently and also vulnerable to various known attacks. To avoid the aforesaid problems and mitigate the authentication complexity of the earlier schemes, we propose a dynamic group based efficient and secure (DGBES-AKA) protocol for MTC in LTE/LTEA network. The proposed protocol consists the group key update scheme with key forward and backward secrecy. The formal verification using ProVerif and security analysis of the proposed protocol represent the security against malicious attacks. Finally, we show the qualitative and quantitative analysis of the DGBES-AKA protocol with the existing protocols. The analysis shows that the proposed protocol has improved results in terms of communication and computation overhead.
机译:机器到机器通信(MTC)已经发展成为信息和通信技术领域最快的扩展之一,并且是事物互联网的重要方面之一。它允许数百万设备通过Internet彼此连接。 MTC具有巨大的市场和大规模的力量,以获得众多应用方案。仅在成功认证MTC设备后,MTC的应用是可靠的,有效的。因此,研究人员提出了基于若干组的认证和关键协议(AKA)协议。每当许多MTC设备同时生成对LTE / LTE-A网络的访问请求时,每个MTC设备都需要单独的认证过程来访问导致真正信令拥塞问题的核心网络。此外,现有基组的AKA协议没有有效地与组管理方案有效,也容易受到各种已知攻击的影响。为避免上述问题并减轻前面方案的身份验证复杂性,我们为LTE / LTEA网络中的MTC提出了一种基于动态组的高效和安全(DGBES-AKA)协议。拟议的协议组成了具有关键前进和后向保密的小组关键更新方案。使用填补议定书的秘密和安全分析的正式验证代表了对恶意攻击的安全性。最后,我们展示了DGBES-AKA协议与现有协议的定性和定量分析。分析表明,该协议在通信和计算开销方面提高了结果。

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