Hybrid KuFaI: A novel secure key generation algorithm using fast independent component analysis for physical layer security techniques

Tapesh Sarsodia, Uma Rathore Bhatt, R. Upadhyay, Vijaylaxmi S. Bhat
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Abstract

Many real‐world applications, such as smart cities, industrial automation, health care, and so forth, utilize IoT‐enabled devices as a part of wireless networks. IoT devices must have low power and low computation complexity requirements with proper measures of security challenges. Since traditional cryptography techniques are not computationally efficient, other alternatives, such as physical layer key generation (PLKG), is one of the attractive means to achieve security. In this paper, we propose to use a fast independent component analysis (FICA) based KuFaI (Kurtosis and FICA) algorithm for a secured PLKG system. This method reduces data dimensions and improves system performance regarding Bit Disagreement Rate (BDR) and randomness. In KuFaI, we rearrange the received signal strength indicator (RSSI) data set using FICA and then select components based on the kurtosis function. Results demonstrate that the performance of the proposed algorithm is far better than the previously used PCA‐based algorithm.
混合 KuFaI:利用快速独立分量分析的新型安全密钥生成算法,用于物理层安全技术
现实世界中的许多应用,如智能城市、工业自动化、医疗保健等,都利用物联网设备作为无线网络的一部分。物联网设备必须满足低功耗、低计算复杂度的要求,并采取适当措施应对安全挑战。由于传统加密技术的计算效率不高,其他替代方法,如物理层密钥生成(PLKG),是实现安全的有吸引力的手段之一。在本文中,我们建议使用基于快速独立分量分析(FICA)的 KuFaI(Kurtosis 和 FICA)算法来实现安全的 PLKG 系统。这种方法减少了数据维数,提高了系统在比特分歧率(BDR)和随机性方面的性能。在 KuFaI 算法中,我们使用 FICA 对接收信号强度指示器(RSSI)数据集进行重新排列,然后根据峰度函数选择分量。结果表明,拟议算法的性能远远优于之前使用的基于 PCA 的算法。
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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