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Robust and Universal Seamless Handover Authentication in 5G HetNets

机译:5G Hetnets中的强大和通用无缝切换认证

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The evolving fifth generation (5G) cellular networks will be a collection of heterogeneous and backward-compatible networks. With the increased heterogeneity and densification of 5G heterogeneous networks (HetNets), it is important to ensure security and efficiency of frequent handovers in 5G wireless roaming environments. However, existing handover authentication mechanisms still have challenging issues, such as anonymity, robust traceability and universality. In this paper, we address these issues by introducing RUSH, a Robust and Universal Seamless Handover authentication protocol for 5G HetNets. In RUSH, anonymous mutual authentication with key agreement is enabled for handovers by exploiting the trapdoor collision property of chameleon hash functions and the tamper-resistance of blockchains. RUSH achieves universal handover authentication for all the diverse mobility scenarios, as exemplified by the handover between 5G new radio and non-3GPP access regardless of the trustworthiness of non-3GPP access and the consistency of the core network. RUSH also achieves perfect forward secrecy, master key forward secrecy, known randomness secrecy, key escrow freeness and robust traceability. Our formal security proofs based on the BAN-logic and formal verification based on AVISPA indicate that RUSH resists various attacks. Comprehensive performance evaluation and comparisons show that RUSH outperforms other schemes in both computation and communication efficiencies.
机译:不断发展的第五代(5G)蜂窝网络将是异构和后向兼容网络的集合。随着5G异构网络(Hetnets)的异质性和致密化增加,重要的是要确保在5G无线漫游环境中频繁切换的安全性和效率。然而,现有的切换认证机制仍然具有具有挑战性的问题,例如匿名,稳健的可追溯性和普遍性。在本文中,我们通过为5G Hetnets引入rush,强大而通用的无缝切换认证协议来解决这些问题。急于,通过利用变色龙散列功能的Trapdoor碰撞特性和堵塞的阻力区,通过利用关键协议的匿名相互认证。 RUSH实现了所有不同移动方案的通用切换认证,如5G新的无线电和非3GPP访问之间的切换,而不管非3GPP访问的可信度和核心网络的一致性。匆忙也取得了完美的前锋保密,大师关键前进保密,已知的随机性保密,主要托管搭配和鲁棒的可追溯性。我们的正式安全证明根据基于Avispa的禁令逻辑和正式验证表明,匆忙抵抗各种攻击。综合性能评估和比较表明,在计算和通信效率方面都有匆忙表现出其他方案。

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