Physical Layer Key Generation between Backscatter Devices over Ambient RF Signals

Pu Wang, Long Jiao, K. Zeng, Zheng Yan
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引用次数: 4

Abstract

Ambient backscatter communication (AmBC), which enables energy harvesting and ultra-low-power communication by utilizing ambient radio frequency (RF) signals, has emerged as a cutting-edge technology to realize numerous Internet of Things (IoT) applications. However, the current literature lacks efficient secret key sharing solutions for resource-limited devices in AmBC systems to protect the backscatter communications, especially for private data transmission. Thus, we propose a novel physical layer key generation scheme between backscatter devices (BDs) by exploiting received superposed ambient signals. Based on the repeated patterns (i.e., cyclic prefix in OFDM symbols) in ambient RF signals, we present a joint transceiver design of BD backscatter waveform and BD receiver to extract the downlink signal and the backscatter signal from the superposed signals. By multiplying the downlink signal and the backscatter signal, we can actually obtain the triangle channel information as a shared random secret source for key generation. Besides, we study the trade-off between the rate of secret key generation and harvested energy by modeling it as a joint optimization problem. Finally, extensive numerical simulations are provided to evaluate the key generation performance, energy harvesting performance, and their trade-offs under various system settings.
基于环境射频信号的后向散射设备之间的物理层密钥生成
环境反向散射通信(AmBC)是利用环境射频(RF)信号实现能量收集和超低功耗通信的技术,已成为实现众多物联网(IoT)应用的前沿技术。然而,对于AmBC系统中资源有限的设备,目前文献中缺乏有效的密钥共享解决方案来保护反向散射通信,特别是私有数据传输。因此,我们提出了一种利用接收到的叠加环境信号在反向散射设备(bd)之间生成物理层密钥的新方案。基于环境射频信号中存在的重复模式(即OFDM符号中的循环前缀),提出了一种BD反向散射波形和BD接收机联合收发器设计,从叠加信号中提取下行信号和反向散射信号。通过将下行信号与后向散射信号相乘,我们实际上可以获得三角形信道信息作为密钥生成的共享随机秘密源。此外,我们还研究了密钥生成速率和收集能量之间的权衡,并将其建模为一个联合优化问题。最后,提供了广泛的数值模拟来评估关键的发电性能,能量收集性能,以及它们在各种系统设置下的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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