论文标题

演示:ijam随机随机化

Demo: iJam with Channel Randomization

论文作者

Melcher, Jordan L., Zheng, Yao, Anthony, Dylan, Troglia, Matthew, Pan, Yanjun, Li, Ming, Yang, Thomas, Yang, Alvin, Aggelopoulos, Samson

论文摘要

物理层密钥生成方法利用通信渠道的变化来实现没有事先安全关联的两个方之间的安全密钥协议。他们的保密率(位生成率)在很大程度上取决于通道的随机性,这可能会在稳定的环境中显着降低。现有方法试图通过将人造噪声注入通道来提高保密率。不幸的是,噪声注入不能改变基础通道状态,这取决于发射器和接收器之间的多径环境。因此,已知这些方法可将钥匙位泄漏到多Antenna Eavesdroppers,后者能够通过多个信号接收的差异来滤波噪声。这项工作展示了一种改进的方法来加强物理层密钥生成方案,例如通道随机化。通道随机方法利用可重新配置的天线在传输过程中快速更改通道状态,并基于开发角度(AOD)基于频道(AOD)的通道估计算法来取消预期接收器的变化效果。组合结果是在预期接收器的眼中稳定的通信通道,但从窃听器的角度随机变化。我们通过提出的方法增强了现有的物理层密钥生成协议IJAM,并开发了一个成熟的远程仪器平台以证明其性能。我们的评估表明,增强不会影响关键设置期间预期接收器的位错误率(BER),而是将窃听器的BER降低到随机猜测的水平,而不管其配备的天线数量如何。

Physical-layer key generation methods utilize the variations of the communication channel to achieve a secure key agreement between two parties with no prior security association. Their secrecy rate (bit generation rate) depends heavily on the randomness of the channel, which may reduce significantly in a stable environment. Existing methods seek to improve the secrecy rate by injecting artificial noise into the channel. Unfortunately, noise injection cannot alter the underlying channel state, which depends on the multipath environment between the transmitter and receiver. Consequently, these methods are known to leak key bits toward multi-antenna eavesdroppers, which is capable of filtering the noise through the differential of multiple signal receptions. This work demonstrates an improved approach to reinforce physical-layer key generation schemes, e.g., channel randomization. The channel randomization approach leverages a reconfigurable antenna to rapidly change the channel state during transmission, and an angle-of-departure (AoD) based channel estimation algorithm to cancel the changing effects for the intended receiver. The combined result is a communication channel stable in the eyes of the intended receiver but randomly changing from the viewpoint of the eavesdropper. We augmented an existing physical-layer key generation protocol, iJam, with the proposed approach and developed a full-fledged remote instrumentation platform to demonstrate its performance. Our evaluations show that augmentation does not affect the bit error rate (BER) of the intended receiver during key establishment but reduces the eavesdropper's BER to the level of random guessing, regardless of the number of antennas it equips.

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