Reciprocity enhancement and decorrelation schemes for PHY-based key generation

S. Gopinath, René Guillaume, P. Duplys, A. Czylwik
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引用次数: 21

Abstract

Providing secure communication links between devices of low computational power has been increasingly investigated during recent years. The need for fast and easy-to-implement security for computationally weak wireless devices has lead to the development of physical layer based key generation approaches. The generation of symmetric cryptographic keys out of wireless channel properties turned out to be a promising approach comprising advantages of symmetric as well as asymmetric cryptography. Numerous quantization schemes have been proposed in previous works to increase the Key Generation Rate (KGR). Also by increasing the sampling rate, the input data can be generated faster. However, due to fast sampling rates, redundancy of subsequent bits will increase. This lowers the quality, that is, the randomness of the generated secret key and makes the system more vulnerable to brute-force attacks. We present and analyze different techniques for transforming a temporally correlated sequence into a compressed sequence of decorrelated bits and, therefore, assure non-redundant key sequences.
基于物理的密钥生成的互易增强和去相关方案
近年来,在低计算能力的设备之间提供安全通信链路的研究越来越多。对计算能力弱的无线设备的快速和易于实现的安全性的需求导致了基于物理层的密钥生成方法的发展。利用无线信道属性生成对称密码密钥是一种很有前途的方法,它结合了对称和非对称密码的优点。为了提高密钥生成率(KGR),在以前的工作中提出了许多量化方案。此外,通过提高采样率,可以更快地生成输入数据。然而,由于快速采样率,后续位的冗余将增加。这降低了质量,即生成的密钥的随机性,并使系统更容易受到暴力攻击。我们提出并分析了将时间相关序列转换为去相关位压缩序列的不同技术,从而确保非冗余密钥序列。
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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