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Performance Improvement Based on Modified Lossless Quantization (MLQ) for Secret Key Generation Extracted from Received Signal Strength

机译:从接收信号强度提取基于改进无损量化(MLQ)的秘密密钥生成的性能改进

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In symmetric cryptography systems have problems in the distribution of secret keys. The two users who will communicate require sharing keys through the public channel. The proposed solution to overcome these problems is to utilize information from the physical layer (e.g. RSS). Received Signal Strength (RSS) is an indicator for measuring the power received by wireless devices. The advantage of secret key extraction using physical layer information from a wireless channel is that it allows both devices within the transmission range to extract the secret key together. In this paper, we propose a secret key generation scheme adopted from an existing scheme with modifications to improve performance. Our proposed system is applied to static and dynamic conditions to test performance. The proposed algorithm is able to obtain a reduction in KDR (Key Disagreement Rate) up to 48.42% and an increase in the KGR (Key Generation Rate) up to 23.35% when compared to the existing scheme. Our proposed system also successfully passed the randomness using the NIST test with the approximate value of entropy generated 0.80 in static conditions and 0.81 in dynamic conditions.
机译:在对称密码系统中,秘密密钥的分配存在问题。将要通信的两个用户需要通过公共渠道共享密钥。克服这些问题的所提出的解决方案是利用来自物理层(例如,RSS)的信息。接收信号强度(RSS)是用于测量无线设备接收到的功率的指示器。使用来自无线信道的物理层信息进行秘密密钥提取的优势在于,它允许传输范围内的两个设备一起提取秘密密钥。在本文中,我们提出了一种从现有方案中采用的秘密密钥生成方案,并对其进行了改进以提高性能。我们提出的系统适用于静态和动态条件以测试性能。与现有方案相比,所提出的算法能够减少多达48.42%的KDR(密钥不一致率),并增加多达23.35%的KGR(密钥产生率)。我们提出的系统还通过NIST测试成功通过了随机性,其中在静态条件下产生的熵近似值为0.80,在动态条件下产生的熵近似值为0.81。

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