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Poster Abstract: SoftLora-A LoRa-Based Platform for Accurate and Secure Timing

机译:海报摘要:基于SoftLora-A基于LoRa的平台,可提供准确而安全的时序

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摘要

LoRa is an emerging low-power wide-area network technology. Existing studies have focused on LoRa's communication performance. Differently, we study two physical properties of LoRa, i.e., its performance in timing the signal propagation and the transmitters' frequency traits. Signal timing is a basis for implementing clock synchronization, ranging, and advanced physical (PHY) layer techniques such as concurrent decoding. However, LoRa end devices do not provide PHY-layer timestamping that is needed for accurate timing. We propose a SoftLoRa design that integrates a low-power software-defined radio receiver with a LoRa transceiver to provide PHY-layer access. Experiments show that SoftLoRa achieves microseconds timing accuracy over one kilometer and in a multistory building with strong signal attenuation. Signal propagation timing is in general susceptible to a frame delay attack. We implement this attack against LoRa by a combination of stealthy jamming and delayed replay. To address the attack, we investigate the inherent frequency biases of LoRa transmitters. With an efficient signal processing algorithm, our frequency bias estimation achieves a resolution of 0.14 parts-per-million (ppm) of the channel's central frequency. This resolution is sufficient to detect the attack that introduces an additional frequency bias of one or more ppm. In summary, this work provides an accurate and secure LoRa-based timing approach based on the SoftLoRa design.
机译:LoRa是一种新兴的低功耗广域网技术。现有研究集中在LoRa的沟通表现上。不同地,我们研究了LoRa的两个物理特性,即它在定时信号传播和发射机频率特性方面的性能。信号时序是实现时钟同步,测距和高级物理(PHY)层技术(例如并发解码)的基础。但是,LoRa终端设备不提供准确计时所需的PHY层时间戳。我们提出了一种SoftLoRa设计,该设计将低功耗软件定义的无线电接收器与LoRa收发器集成在一起,以提供PHY层访问。实验表明,SoftLoRa在一公里以上的多层建筑物中具有很强的信号衰减能力,可实现微秒的计时精度。信号传播时序通常容易受到帧延迟攻击。我们通过隐式干扰和延迟重播的组合来实施针对LoRa的攻击。为了解决这种攻击,我们研究了LoRa发射机的固有频率偏差。借助有效的信号处理算法,我们的频率偏差估算可实现通道中心频率的百万分之0.14(ppm)的分辨率。此分辨率足以检测引入了一个或多个ppm额外频率偏差的攻击。总之,这项工作基于SoftLoRa设计,提供了一种基于LoRa的准确,安全的计时方法。

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