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Enhancing Secrecy With Multiantenna Transmission in Millimeter Wave Vehicular Communication Systems

机译:毫米波车载通信系统中的多天线传输提高保密性

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摘要

Millimeter wave (mmWave) vehicular communication systems will provide an abundance of bandwidth for the exchange of raw sensor data and support driver-assisted and safety-related functionalities. Lack of secure communication links, however, may lead to abuses and attacks that jeopardize the efficiency of transportation systems and the physical safety of drivers. In this paper, we propose two physical layer (PHY) security techniques for vehicular mmWave communication systems. The first technique uses multiple antennas with a single radio-frequency (RF) chain to transmit information symbols to a target receiver and noise-like signals in nonreceiver directions. The second technique uses multiple antennas with a few RF chains to transmit information symbols to a target receiver and opportunistically inject artificial noise in controlled directions, thereby reducing interference in vehicular environments. Theoretical and numerical results show that the proposed techniques provide higher secrecy rate when compared to traditional PHY security techniques that require digital or more complex antenna architectures.
机译:毫米波(mmWave)车载通信系统将提供丰富的带宽,用于交换原始传感器数据,并支持驾驶员辅助和安全相关的功能。但是,缺乏安全的通信链接可能会导致滥用和攻击,从而危害运输系统的效率和驾驶员的人身安全。在本文中,我们提出了两种用于车辆mmWave通信系统的物理层(PHY)安全技术。第一种技术使用具有单个射频(RF)链的多个天线将信息符号发送到目标接收器,并在非接收器方向上发送类似噪声的信号。第二种技术使用具有几个RF链的多个天线将信息符号发送到目标接收器,并在受控方向上时机注入人工噪声,从而减少车辆环境中的干扰。理论和数值结果表明,与需要数字或更复杂的天线架构的传统PHY安全技术相比,提出的技术可提供更高的保密率。

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