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Unified and fast handover authentication based on link signatures in 5G SDN-based HetNet

机译:基于5G SDN的HetNet中基于链接签名的统一快速切换身份验证

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摘要

Existing handover authentication schemes are implemented in the upper layer through cryptographic techniques with different protocols and parameters involved under different handover scenarios, introducing high latency and complexity especially in the next generation (5G) highly heterogeneous network (HetNet). The authors propose to introduce wireless link signatures decided by users' locations as handover authentication data to achieve unified and fast handover authentication at the physical layer in 5G software defined networking-based HetNet. Specifically, the unique wireless channel characteristics between a user and the serving access point (AP) are extracted as the secure context information (SCI) and transferred to the target AP. The latter determines whether the user is the legitimate one who has already been authenticated according to the received SCI. They then analyse the authentication performance relating to multiple attributes and results demonstrate that the authentication strength can be adaptively adjusted. Furthermore, they find that optimum performance can be achieved by setting a proper decision threshold and derive the sub-optimal performance by iterative search. Lastly, analysis and simulations on latency and overhead compared with existing ones are conducted and results prove the effectiveness of the proposed scheme.
机译:现有的切换认证方案是通过密码技术在上层实现的,密码技术在不同的切换方案下涉及不同的协议和参数,特别是在下一代(5G)高度异构网络(HetNet)中,引入了高延迟和复杂性。作者建议将由用户位置决定的无线链路签名作为切换身份验证数据引入,以在基于网络的5G软件定义的HetNet的物理层上实现统一,快速的切换身份验证。具体而言,提取用户与服务接入点(AP)之间的唯一无线信道特性作为安全上下文信息(SCI),并将其传输到目标AP。后者根据接收到的SCI确定用户是否是已通过身份验证的合法用户。然后,他们分析了与多个属性有关的身份验证性能,结果表明可以自适应地调整身份验证强度。此外,他们发现可以通过设置适当的决策阈值来实现最佳性能,并通过迭代搜索得出次优性能。最后,与现有方法进行了时延和开销的分析与仿真,结果证明了该方案的有效性。

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