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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Authenticated secret key generation in delay-constrained wireless systems
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Authenticated secret key generation in delay-constrained wireless systems

机译:延迟约束无线系统中的经过身份验证的密钥生成

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With the emergence of 5G low-latency applications, such as haptics and V2X, low-complexity and low-latency security mechanisms are needed. Promising lightweight mechanisms include physical unclonable functions (PUF) and secret key generation (SKG) at the physical layer, as considered in this paper. In this framework, we propose (i) a zero round trip time (0-RTT) resumption authentication protocol combining PUF and SKG processes, (ii) a novel authenticated encryption (AE) using SKG, and (iii) pipelining of the AE SKG and the encrypted data transfer in order to reduce latency. Implementing the pipelining at PHY, we investigate a parallel SKG approach for multi-carrier systems, where a subset of the subcarriers are used for SKG and the rest for data transmission. The optimal solution to this PHY resource allocation problem is identified under security, power, and delay constraints, by formulating the subcarrier scheduling as a subset-sum 0 ? 1 knapsack optimization. A heuristic algorithm of linear complexity is proposed and shown to incur negligible loss with respect to the optimal dynamic programming solution. All of the proposed mechanisms have the potential to pave the way for a new breed of latency aware security protocols.
机译:随着5G低延迟应用的出现,例如触觉和V2X,需要低复杂性和低延迟安全机制。有希望的轻量级机制包括本文中考虑的物理层的物理不可渗透功能(PUF)和秘密密钥生成(SKG)。在此框架中,我们提出(i)零循环时间(0-rt)恢复认证协议,组合PUF和SKG进程,(ii)使用SKG的新型经过认证的加密(AE),(III)AE SKG的流水线和加密的数据传输,以减少延迟。我们在PHY实现流水线,我们研究了多载波系统的并行SKG方法,其中子载波的子集用于SKG和其余用于数据传输。通过将子载波调度作为子集合0,通过将子载波调度标注为子集 - 和0,在安全性,电源和延迟约束下识别出该PHY资源分配问题的最佳解决方案? 1背包优化。提出了一种线性复杂性的启发式算法,并显示出对最佳动态编程解决方案的忽略损失。所有提议的机制都有可能为新的延迟感知安全协议铺平道路。

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