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Modeling Enlargement Attacks Against UWB Distance Bounding Protocols

机译:针对UWB距离限制协议的扩大化攻击建模

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摘要

Distance bounding protocols make it possible to determine a trusted upper bound on the distance between two devices. Their key property is to resist reduction attacks, i.e., attacks aimed at reducing the distance measured by the protocol. Recently, researchers have also focused on enlargement attacks, aimed at enlarging the measured distance. Providing security against such attacks is important for secure positioning techniques. The contribution of this paper is to provide a probabilistic model for the success of an enlargement attack against a distance bounding protocol realized with the IEEE 802.15.4a ultra-wideband standard. The model captures several variables, such as the propagation environment, the signal-to-noise ratio, and the time-of-arrival estimation algorithm. We focus on non-coherent receivers, which can be used in low-cost low-power applications. We validate our model by comparison with physical-layer simulations and goodness-of-fit tests. The results show that our probabilistic model is sufficiently realistic to replace physical-layer simulations. Our model can be used to evaluate the security of the ranging/positioning solutions that can be subject to enlargement attacks. We expect that it will significantly facilitate future research on secure ranging and secure positioning.
机译:距离限制协议使确定两个设备之间距离的可信上限成为可能。它们的关键特性是抵抗还原攻击,即旨在减少协议所测量距离的攻击。最近,研究人员还集中于扩大攻击,旨在扩大测得的距离。提供针对此类攻击的安全性对于安全定位技术至关重要。本文的贡献是为针对IEEE 802.15.4a超宽带标准实现的距离限制协议成功进行扩展攻击提供一个概率模型。该模型捕获了几个变量,例如传播环境,信噪比和到达时间估计算法。我们专注于非相干接收机,这些接收机可用于低成本,低功耗应用。我们通过与物理层仿真和拟合优度测试进行比较来验证我们的模型。结果表明,我们的概率模型足以代替物理层仿真。我们的模型可用于评估可能受到扩大攻击的测距/定位解决方案的安全性。我们希望它将大大促进未来有关安全测距和安全定位的研究。

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