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Orthogonality-Sabotaging Attacks against OFDMA-based Wireless Networks

机译:基于OFDMA的无线网络的正交破坏攻击

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Wireless jamming remains as one of the primary threats towards wireless security. Traditionally, jamming is able to disrupt wireless signals within, but not beyond, its covered bandwidth. In this paper, we propose a novel attack strategy, called orthogonality-sabotaging attack, against orthogonal frequency division multiple access (OFDMA) that has been widely adopted in today's wireless network standards (e.g., 4G/5G and 802.11ax). The attack intentionally introduces an unaligned narrowband jamming signal to an OFDMA network so as to destroy the orthogonality among all subcarriers in broadband signals. We theoretically formulate and optimize the attack strategies, and then use real-world experiments to show that orthogonality sabotaging is very efficient and can take down an 802.11ax network with only 1/5-1/4 of the full network bandwidth. Finally, we propose an attack identification and localization method to identify and localize orthogonality-sabotaging attacks in the fullband spectrum with 92% overall accuracy and localization errors within about 0.4 subcarrier spacing in experiments.
机译:无线干扰仍然是无线安全的主要威胁之一。传统上,干扰能够破坏无线信号在其覆盖带宽之内,但不能超出其覆盖带宽。在本文中,我们提出了一种针对正交频分多址(OFDMA)的新颖攻击策略,称为正交破坏攻击,该策略已被当今的无线网络标准(例如4G / 5G和802.11ax)广泛采用。攻击有意将未对齐的窄带干扰信号引入OFDMA网络,以破坏宽带信号中所有子载波之间的正交性。我们从理论上制定并优化了攻击策略,然后使用实际实验证明正交破坏非常有效,并且可以破坏仅占整个网络带宽1 / 5-1 / 4的802.11ax网络。最后,我们提出了一种攻击识别和定位方法,以在全频带频谱中识别和定位正交破坏性攻击,在实验中,该精度在92个子载波间距内具有92%的总体准确性和定位误差。

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