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首页> 外文期刊>Information Forensics and Security, IEEE Transactions on >Applying Beamforming to Address Temporal Correlation in Wireless Channel Characterization-Based Secret Key Generation
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Applying Beamforming to Address Temporal Correlation in Wireless Channel Characterization-Based Secret Key Generation

机译:在基于无线信道表征的秘密密钥生成中将波束成形应用于地址时间相关

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Wireless secret key generation (WKG) methods based on communications channel characterizations have gained significant interest as a mechanism for providing secure point-to-point communications. Ultra-wide band (UWB) WKG solutions provide an advantage over narrow- and wide-band approaches in that they can generate secure keys even when Alice and Bob, the two communicating parties, and all objects within the environment in which they exist, are stationary (i.e., in scenarios involving zero movement). This creates a secondary problem in that the high temporal correlations of such environments can lead to successive WKG processes producing identical or nearly identical secret keys, whereas the ideal is that all generated keys from successive WKG processes should be independent. This work shows that one method available to address this problem is to move to multiple-input multiple-output (MIMO)-based antenna systems and the use of random beamforming. The security of the resulting approach is assessed with respect to the worst case scenario whereby the eavesdropper, Eve, is assumed to possess perfect knowledge of Alice and Bob's MIMO channel and is able to estimate, with some degree of error, the coefficients of Alice and Bob's independent random beamformers.
机译:作为提供安全的点对点通信的机制,基于通信信道特征的无线秘密密钥生成(WKG)方法引起了极大的兴趣。超宽带(UWB)WKG解决方案提供了优于窄带和宽带方法的优势,因为即使爱丽丝和鲍勃,两个通信方以及它们所在的环境中的所有对象都位于静止的(即,在涉及零运动的情况下)。这就产生了第二个问题,即这种环境的高时间相关性可能导致连续的WKG进程产生相同或几乎相同的秘密密钥,而理想的情况是,从连续的WKG进程产生的所有密钥都应该是独立的。这项工作表明,可用于解决此问题的一种方法是移至基于多输入多输出(MIMO)的天线系统,并使用随机波束成形。针对最坏情况评估了所得方法的安全性,在这种情况下,假设窃听者Eve拥有Alice和Bob的MIMO信道的完全知识,并且能够在一定程度上估计Alice和Bob系数的情况。鲍勃的独立随机波束成形器。

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