Secure key generation from OFDM subcarriers' channel responses

Junqing Zhang, A. Marshall, Roger Francis Woods, T. Duong
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引用次数: 31

Abstract

The ability to exchange keys between users is vital in any wireless based security system. A key generation technique which exploits the randomness of the wireless channel is a promising alternative to existing key distribution techniques, e.g., public key cryptography. In this paper, a secure key generation scheme based on the subcarriers' channel responses in orthogonal frequency-division multiplexing (OFDM) systems is proposed. We first implement a time-variant multipath channel with its channel impulse response modelled as a wide sense stationary (WSS) uncorrelated scattering random process and demonstrate that each subcarrier's channel response is also a WSS random process. We then define the X% coherence time as the time required to produce an X% correlation coefficient in the autocorrelation function (ACF) of each channel tap, and find that when all the channel taps have the same Doppler power spectrum, all subcarriers' channel responses has the same ACF as the channel taps. The subcarrier's channel response is then sampled every X% coherence time and quantized into key bits. All the key sequences' randomness is tested using National Institute of Standards and Technology (NIST) statistical test suite and the results indicate that the commonly used sampling interval as 50% coherence time cannot guarantee the randomness of the key sequence.
从OFDM子载波的信道响应生成安全密钥
在用户之间交换密钥的能力在任何基于无线的安全系统中都是至关重要的。利用无线信道随机性的密钥生成技术是现有密钥分发技术(如公钥加密)的一个有前途的替代方案。提出了一种基于正交频分复用(OFDM)系统中子载波信道响应的安全密钥生成方案。我们首先实现了一个时变多径信道,其信道脉冲响应建模为广义平稳(WSS)不相关散射随机过程,并证明了每个子载波的信道响应也是一个WSS随机过程。然后,我们将X%相干时间定义为在每个通道抽头的自相关函数(ACF)中产生X%相关系数所需的时间,并发现当所有通道抽头具有相同的多普勒功率谱时,所有子载波的通道响应具有与通道抽头相同的ACF。然后每隔X%相干时间对副载波的信道响应进行采样,并将其量化为密钥位。利用美国国家标准技术研究院(NIST)统计测试套件对所有密钥序列的随机性进行了测试,结果表明,常用的采样间隔为50%相干时间并不能保证密钥序列的随机性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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