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首页> 外文期刊>IEEE transactions on information forensics and security >Exploiting Multi-Antenna Non-Reciprocal Channels for Shared Secret Key Generation
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Exploiting Multi-Antenna Non-Reciprocal Channels for Shared Secret Key Generation

机译:利用多天线互惠通道共享密钥

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摘要

Traditional physical-layer (PHY)-based secret key generation schemes typically assume reciprocity of forward and reverse channels in order for facilitated shared secrecy. However, frequency-selective channels for frequency division duplex links as well as calibration difference of transceiver hardwares can invalidate reciprocity assumption and can cause severe key error floors between users. In this paper, we propose two practical PHY-based secret key generation schemes for multiple-input and multiple-output wireless links over non-reciprocal physical channels. One is pilot assistant secret key (PASKey) generation and the other is eigenvalue-based secret key (EVSKey) generation. In PASKey, both legitimate users estimate the same composite channel, while EVSKey exploits the properties of eigenvalues to generate secret bits. Both are effective against secrecy key theft by eavesdroppers. Furthermore, without adopting public training signals, EVSKey manages to generate secret bits even when nearby eavesdroppers collude. Our two schemes are shown to be more efficient and can achieve lower key error ratio than the existing methods.
机译:传统的基于物理层(PHY)的密钥生成方案通常采用前向和反向通道的互惠性,以便于共享保密。但是,用于频分双工链路的频率选择通道以及收发器硬件的校准差异可能会使对等假设无效,并可能导致用户之间出现严重的关键错误底限。在本文中,我们针对不可逆物理信道上的多输入和多输出无线链路,提出了两种基于PHY的实用密钥生成方案。一种是飞行员辅助密钥(PASKey)生成,另一种是基于特征值的密钥(EVSKey)生成。在PASKey中,两个合法用户都估计相同的复合通道,而EVSKey利用特征值的属性来生成秘密位。两者都可有效防止窃听者偷偷偷偷地偷窃钥匙。此外,即使附近的窃听者串通,EVSKey仍可在不采用公共培训信号的情况下设法生成秘密位。与现有方法相比,我们的两种方案显示出更高的效率,并且可以实现更低的键错误率。

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