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A Novel Algorithm for Secret Key Generation in Passive Backscatter Communication Systems

机译:无源反向散射通信系统中密钥生成的新算法

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The extreme asymmetry of passive backscatter communications systems such as passive Wi-Fi, while allowing significant reduction of node power consumption for communications, imposes severe resource limitations on implementing secure communications. Target applications for this technology are typically driven by the promise of low power consumption, up to four orders of magnitude lower than commercial Wi-Fi chipsets. Industry standard security approaches using encryption technology are problematic in this power regime, particularly as the potential low complexity and size of passive nodes will encourage application to high-density networks of very small, energy-poor devices. Generation of shared symmetric keys through reciprocal channel measurements, for example of received signal strength (RSS), is a natural approach in this situation. However previous work in this area has focused on the symmetric case where base station and nodes communicate at the same radio frequency. Backscatter communications uses two frequencies, typically a pilot beacon transmitted by a base station on one frequency, and response on a shifted frequency. This paper describes a protocol for RSS-based shared key generation for this architecture and reports the results of an experimental implementation using software radio emulation of backscatter communication.
机译:诸如无源Wi-Fi之类的无源反向散射通信系统的极端不对称性,虽然可以大大降低通信的节点功耗,但在实施安全通信方面却存在严重的资源限制。这项技术的目标应用通常是由低功耗的承诺推动的,这种功耗比商用Wi-Fi芯片组低多达四个数量级。在这种功率机制中,使用加密技术的行业标准安全性方法存在问题,特别是因为潜在的低复杂性和无源节点的大小将鼓励应用到非常小的,能源匮乏的设备的高密度网络中。在这种情况下,通过相互信道测量(例如接收信号强度(RSS))生成共享对称密钥是一种自然的方法。但是,该领域以前的工作集中在基站和节点以相同射频进行通信的对称情况下。反向散射通信使用两个频率,通常是基站在一个频率上发送的导频信标,并在偏移的频率上进行响应。本文介绍了一种针对该体系结构的基于RSS的共享密钥生成的协议,并报告了使用反向散射通信的软件无线电仿真进行实验性实施的结果。

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