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Split Antenna Array in Millimeter Wave for Secure Vehicular Communication

机译:毫米波分裂天线阵列,用于安全的车辆通信

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The small carrier wavelength at millimeter wave (mm-wave) frequencies features a large number of co-located antennas. Wireless networks with directional antennas using beamforming at mm-wave also have potential to provide an enhanced security in the vehicular communication system. Large bandwidth of mm-wave can provide auto drive and safety linked functionalities, However, safety and efficiency of the vehicular transportation system can be jeopardized by many kinds of attacks by eavesdroppers, physical layer security can work as an extra layer of security for wireless communication systems. To secure communication in-between Vehicles, an Analog precoding based physical Layer technique for mm-wave vehicular communication systems is presented in the paper. The proposed technique works by exploiting large Antenna arrays at millimeter waves and provide a secure directional transmission with low power consuming phase shifters and single Radio Frequency Chain. Larger antennas arrays are split into two subsets, one for transmission of data and another for generating noise. The proposed technique offers improved coherent transmission at the legitimate receiver and by introducing artificial noise to the eavesdroppers at random directions. This outcome in low SNR for the eavesdroppers, hence hacking information becomes extremely difficult. Numerical and Simulation results show the superior performance of the proposed technique compared to traditional physical layer security technique and conventional array technique.
机译:毫米波(mm-wave)频率处的小载波波长具有大量共置天线。具有使用毫米波波束成形的定向天线的无线网络也具有在车辆通信系统中提供增强的安全性的潜力。毫米波的大带宽可以提供自动驾驶和安全链接的功能,但是,车辆运输系统的安全性和效率会受到窃听者的多种攻击的危害,物理层安全性可以作为无线通信的额外安全性层系统。为了保证车辆之间的通信安全,本文提出了一种基于模拟预编码的毫米波车辆通信系统物理层技术。所提出的技术通过利用毫米波处的大型天线阵列进行工作,并提供了一种低功耗的移相器和单个射频链的安全定向传输。较大的天线阵列分为两个子集,一个子集用于数据传输,另一个子集用于产生噪声。所提出的技术通过在随机方向上向窃听者引入人工噪声,在合法接收器处提供了改进的相干传输。窃听者的信噪比(SNR)较低,因此破解信息变得极为困难。数值和仿真结果表明,与传统的物理层安全技术和传统的阵列技术相比,该技术具有优越的性能。

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