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Physical Layer Identification Based on Spatial–Temporal Beam Features for Millimeter-Wave Wireless Networks

机译:基于时空波束特征的毫米波无线网络物理层识别

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摘要

With millimeter wave (mmWave) wireless communication envisioned to be the key enabler of next generation high data rate wireless networks, security is of paramount importance. While conventional security measures in wireless networks operate at a higher layer of the protocol stack, physical layer security utilizes unique device dependent hardware features to identify and authenticate legitimate devices. In this work, we identify that the manufacturing tolerances in the antenna arrays used in mmWave devices contribute to a beam pattern that is unique to each device, and to that end we propose a novel device fingerprinting scheme based on the unique beam pattern of different codebooks used by the mmWave devices. Specifically, we propose a fingerprinting scheme with multiple access points (APs) to take advantage of the rich spatial-temporal information of the beam pattern. We perform comprehensive experiments with commercial off-the-shelf mmWave devices to validate the reliability performance of our proposed method under various scenarios. We also compare our beam pattern feature with a conventional physical layer feature namely power spectral density feature (PSD). To that end, we implement PSD feature based fingerprinting for mmWave devices. We show that the proposed multiple APs scheme is able to achieve over 99% identification accuracy for stationary LOS and NLOS scenarios and significantly outperform the PSD feature fingerprinting method. For mobility scenario, the overall identification accuracy is 99%. In addition, we perform security analysis of our proposed beam pattern fingerprinting system and PSD fingerprinting system by studying the feasibility of performing impersonation attacks. We design and implement an impersonation attack mechanism for mmWave wireless networks using state-of-the-art 60 GHz software defined radios. We discuss our findings and their implications on the security of the mmWave wireless networks.
机译:随着毫米波(mmWave)无线通信被视为下一代高数据速率无线网络的关键推动力,安全性至关重要。虽然无线网络中的常规安全措施在协议栈的更高层上运行,但物理层安全性利用依赖于设备的唯一硬件功能来标识和认证合法设备。在这项工作中,我们确定毫米波设备中使用的天线阵列的制造公差会导致每个设备所独有的波束方​​向图,为此,我们基于不同码本的唯一波束方向图,提出了一种新颖的设备指纹识别方案。由mmWave设备使用。具体来说,我们提出了一种具有多个接入点(AP)的指纹方案,以利用波束图案的丰富时空信息。我们使用现成的商用mmWave设备进行了全面的实验,以验证我们提出的方法在各种情况下的可靠性。我们还将波束图案特征与常规物理层特征(即功率谱密度特征(PSD))进行比较。为此,我们为mmWave设备实现了基于PSD功能的指纹识别。我们表明,所提出的多个AP方案能够针对固定的LOS和NLOS场景实现超过99%的识别准确度,并且明显优于PSD特征指纹识别方法。对于移动性场景,总体识别精度为99%。另外,我们通过研究进行模拟攻击的可行性,对我们提出的波束模式指纹识别系统和PSD指纹识别系统进行安全性分析。我们使用最先进的60 GHz软件定义无线电为mmWave无线网络设计和实现模拟攻击机制。我们讨论了我们的发现及其对mmWave无线网络安全性的影响。

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