迈向安全且可扩展的超宽带定位系统

Michael Stocker, Bernhard Großwindhager, C. Boano, K. Römer
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引用次数: 11

摘要

基于超宽带(UWB)技术的定位系统正变得无处不在,并使大量有吸引力的物联网应用成为可能,从智能接入和资产跟踪到自动驾驶汽车导航。由于这些定位系统通常部署在大面积上,基于uwb的研究重点最近转移到开发可扩展的解决方案上,这些解决方案可以为无数标签提供高定位精度,同时最大限度地提高能效。与此同时,随着定位系统越来越多地用于安全关键环境,一些学术努力和IEEE 802的标准化活动。15.4 z$工作组为使用超宽带技术进行安全距离估计奠定了基础。不幸的是,这两项努力各自独立,无法融合在一起。在本文中,我们强调了这个问题,并描述了保护现代基于uwb的定位系统所面临的挑战,这些定位系统在设计时考虑了可扩展性。我们首先说明了单向通信的使用,同步锚点的需求,以及准同步响应的使用,这些都是最近基于到达时差的可扩展UWB系统的共同特征,尽管使用了IEEE $802,但这些解决方案仍然容易受到几种攻击。15.4 z。在进行安全分析并描述可扩展UWB系统如何暴露于几种攻击之后,我们设计了许多设计概念来抵消已识别的攻击并保护这些系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Secure and Scalable UWB-based Positioning Systems
Positioning systems based on ultra-wideband (UWB) technology are becoming ubiquitous and enable a plethora of attractive Internet of Things applications, ranging from smart access and asset tracking to the navigation of autonomous vehicles. As these positioning systems are often deployed over large areas, the focus of UWB-based research has recently shifted to the development of scalable solutions that can offer a high positioning accuracy for countless tags while maximizing energyefficiency. At the same time, as positioning systems are increasingly used in safety-critical settings, several academic efforts and the standardization activities of the IEEE $802. 15.4 z$ working group have laid the foundations for a secure distance estimation using UWB technology. Unfortunately, these two endeavours have followed independent tracks that do not blend together. In this paper, we highlight this issue and describe the challenge of securing modern UWB-based positioning systems that are designed with scalability in mind. We first illustrate how the use of unidirectional communications, the need for synchronized anchors, and the use of quasi-simultaneous responses, which are common features of recent scalable UWB systems based on timedifference-of-arrival, make these solutions vulnerable to several attacks, despite the use of IEEE $802. 15.4 z$. After carrying out a security analysis and describing how scalable UWB systems are exposed to several attacks, we devise a number of design concepts to counteract the identified attacks and secure these systems.
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