我发,所以我漏:低功耗广域网中的信息泄漏

Patrick Leu, Ivan Puddu, Aanjhan Ranganathan, Srdjan Capkun
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引用次数: 11

摘要

低功耗广域网(lpwan),如LoRa,正迅速成为大规模物联网部署(如智慧城市)的首选网络技术。由于长距离通信和超低功耗,支持lpwan的传感器如今被部署在各种无线传输敏感信息的应用场景中。在这项工作中,我们研究了lpwan的隐私保证,特别是LoRa。我们表明,尽管基于事件的无线电通信占空比,即仅在事件发生时传输无线电信号,节省了电力,但它本质上泄露了信息。这种信息泄漏与实现的加密原语无关。我们确定了两种类型的信息泄漏,并表明在不产生显著的额外通信和计算成本的情况下很难完全防止泄漏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
I Send, Therefore I Leak: Information Leakage in Low-Power Wide Area Networks
Low-power wide area networks (LPWANs), such as LoRa, are fast emerging as the preferred networking technology for large-scale Internet of Things deployments (e.g., smart cities). Due to long communication range and ultra low power consumption, LPWAN-enabled sensors are today being deployed in a variety of application scenarios where sensitive information is wirelessly transmitted. In this work, we study the privacy guarantees of LPWANs, in particular LoRa. We show that, although the event-based duty cycling of radio communication, i.e., transmission of radio signals only when an event occurs, saves power, it inherently leaks information. This information leakage is independent of the implemented crypto primitives. We identify two types of information leakage and show that it is hard to completely prevent leakage without incurring significant additional communication and computation costs.
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