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Shared Secret Key Generation via Carrier Frequency Offsets

机译:通过载波频率偏移生成共享密钥

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This work presents a novel method to generate secret keys shared between a legitimate node pair (Alice and Bob) to safeguard the communication between them from an unauthorized node (Eve). To this end, we exploit the reciprocal carrier frequency offset (CFO) between the legitimate node pair to extract common randomness out of it to generate shared secret keys. The proposed key generation algorithm involves standard steps: the legitimate nodes exchange binary phase-shift keying (BPSK) signals to perform blind CFO estimation on the received signals, and do equi-probable quantization of the noisy CFO estimates followed by information reconciliation-to distil a shared secret key. Furthermore, guided by the Allan deviation curve, we distinguish between the two frequency-stability regimes-when the randomly time-varying CFO process i) has memory, ii) is memoryless; thereafter, we compute the key generation rate for both regimes. Simulation results show that the key disagreement rate decreases exponentially with increase in the signal to noise ratio of the link between Alice and Bob. Additionally, the decipher probability of Eve decreases as soon as either of the two links observed by the Eve becomes more degraded compared to the link between Alice and Bob.
机译:这项工作提出了一种新颖的方法来生成在合法节点对(爱丽丝和鲍勃)之间共享的秘密密钥,以保护未授权节点(夏娃)在它们之间的通信。为此,我们利用合法节点对之间的相互载波频率偏移(CFO)提取其中的公共随机性,以生成共享密钥。提出的密钥生成算法涉及标准步骤:合法节点交换二进制相移键控(BPSK)信号以对接收到的信号进行盲CFO估计,并对嘈杂的CFO估计进行等概率量化,然后进行信息协调以分配给共享密钥。此外,在Allan偏差曲线的指导下,当随机时变CFO过程i)具有记忆力,ii)无记忆力时,我们可以区分这两种频率稳定状态。此后,我们计算两种方案的密钥生成率。仿真结果表明,密钥不一致率随着爱丽丝与鲍伯之间链路的信噪比的增加而呈指数下降。此外,与由爱丽丝和鲍勃之间的链接相比,由夏娃观察到的两个链接中的任何一个链接变得更加退化时,夏娃的解密概率也会降低。

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