一种基于维纳滤波外推的车载通信高一致性无线密钥生成方案

IF 4.8 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC Automotive Innovation Pub Date : 2023-11-03 DOI:10.1007/s42154-023-00254-z
Yiming Ma, Linning Peng, Wenhao Yin, Hua Fu, Aiqun Hu, Peng Guo, Hongxing Hu
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引用次数: 0

摘要

无线信道密钥生成是一种新兴的通信网络安全技术,它利用无线信道的互易性和时变特性在通信双方之间生成对称密钥。与现有的非对称密钥分发方法相比,无线信道生成密钥具有复杂度低、安全性高的特点,特别适用于分布式网络。在车载通信中,由于车辆的运动导致无线信道的互易性降低。提出了一种高一致性的车载通信无线密钥生成方案,特别适用于LTE- v2x (LTE车对一切)系统。设计了一种基于维纳滤波外推的信道互易增强方法,有效地减少了接收端信道间的不匹配,显著降低了密钥不一致率。为了验证LTE-V2X系统中密钥生成的有效性,建立了一个基于车载和通用软件无线电外设(USRP)平台的真实实验系统。仿真和大量的实际测试验证了该方法的有效性。
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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A High Consistency Wireless Key Generation Scheme for Vehicular Communication Based on Wiener Filter Extrapolation

Secret key generation from wireless channel is an emerging technology for communication network security, which exploits the reciprocity and time variability of wireless channels to generate symmetrical keys between the communication parties. Compared to the existing asymmetric key distribution methods, secret key generation from wireless channel has low complexity and high security, making it especially suitable for distributed networks. In vehicular communications, the reciprocity of wireless channel is degraded due to the movement of vehicular. This paper proposes a high consistency wireless key generation scheme for vehicular communication, especially applied to LTE-V2X (LTE vehicle to everything) systems. A channel reciprocity enhancement method is designed based on Wiener filter extrapolation, which can efficiently reduce the mismatch between the channels at the receiver and significantly reduce key disagreement rate. A real experimental system based on vehicle and universal software radio peripheral (USRP) platform is setup to verify the secret key generation in LTE-V2X systems. The effectiveness of the proposed method is verified in simulations and extensive practical tests.

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来源期刊
Automotive Innovation
Automotive Innovation Engineering-Automotive Engineering
CiteScore
8.50
自引率
4.90%
发文量
36
期刊介绍: Automotive Innovation is dedicated to the publication of innovative findings in the automotive field as well as other related disciplines, covering the principles, methodologies, theoretical studies, experimental studies, product engineering and engineering application. The main topics include but are not limited to: energy-saving, electrification, intelligent and connected, new energy vehicle, safety and lightweight technologies. The journal presents the latest trend and advances of automotive technology.
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