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CPPHA: Capability-Based Privacy-Protection Handover Authentication Mechanism for SDN-Based 5G HetNets

机译:CPPHA:基于能力的PRICACE-PRESTION切换服务,用于基于SDN的5G Hetnets

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摘要

Ultra-dense Heterogeneous network (HetNet) technique can significantly improve wireless link quality, spectrum efficiency and system capacity, and satisfy different requirements for coverage in hotspots, which has been viewed as one of the key technologies in fifth Generation (5G) network. Due to the existence of many different types of base stations (BSs) and the complexity of the network topology in the 5G HetNets, there are a lot of new challenges in security and mobility management aspects for this multi-tier 5G architecture including insecure access points and potential frequent handovers among several different types of base stations. In this paper, we integrate user capability and Software Defined Network (SDN) technique, and propose a capability-based privacy protection handover authentication mechanism in SDN-based 5G HetNets. Our proposed scheme can achieve the mutual authentication and key agreement between User Equipments (UEs) and BSs in 5G HetNets at the same time largely reduce the authentication handover cost. We demonstrate that our proposed scheme indeed can provide robust security protection by employing several security analysis methods including the BAN logic and the formal verification tool Scyther. In addition, the performance evaluation results show that our scheme outperforms other existing schemes.
机译:超致密的异构网络(HetNet)技术可以显着提高无线链路质量,频谱效率和系统容量,并满足热点覆盖范围的不同要求,这已被视为第五代(5G)网络中的关键技术之一。由于存在许多不同类型的基站(BSS)和5G Hetnets中的网络拓扑的复杂性,在包括不安全的接入点(包括不安全的接入点)的安全和移动管理方面存在很多新的挑战几种不同类型的基站之间的潜在频繁切换。在本文中,我们集成了用户能力和软件定义的网络(SDN)技术,并提出了基于SDN的5G Hetnets的基于能力的隐私保护切换认证机制。我们所提出的方案可以同时在5G Hetnets中实现用户设备(UE)和BS之间的相互认证和关键协议,同时降低了认证切换成本。我们证明,我们的拟议计划确实可以通过采用几种安全分析方法提供强大的安全保护,包括禁令逻辑和正式验证工具Syther。此外,绩效评估结果表明,我们的计划优于其他现有计划。

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