单天线物联网设备的接近检测

Timothy J. Pierson, Travis Peters, Ronald A. Peterson, D. Kotz
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引用次数: 7

摘要

提供无线设备之间的安全通信是一个尚未完全解决的挑战。在这些情况下,从未共享过密钥的设备之间的紧密物理距离有时被用作信任的基础;距离近的设备被认为是值得信赖的,而距离远的设备则被视为潜在的对手。然而,由于无线电波是看不见的,用户可能认为无线设备正在与附近的设备通信,而实际上用户的设备正在与远处的对手通信。研究人员之前提出了多天线设备确定与其他设备物理接近的方法,但具有单天线的设备,例如通常用于物联网的设备,无法利用这些技术。我们提出了一种称为SNAP(单天线接近)的方法的理论和实践评估,该方法允许单天线Wi-Fi设备快速确定与另一个Wi-Fi设备的接近程度。我们的接近检测技术利用Wi-Fi的重复特性和发射天线近场区域信号的行为,以高概率检测接近度;SNAP不会在距离超过14厘米的范围内错误地声明接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proximity Detection with Single-Antenna IoT Devices
Providing secure communications between wireless devices that encounter each other on an ad-hoc basis is a challenge that has not yet been fully addressed. In these cases, close physical proximity among devices that have never shared a secret key is sometimes used as a basis of trust; devices in close proximity are deemed trustworthy while more distant devices are viewed as potential adversaries. Because radio waves are invisible, however, a user may believe a wireless device is communicating with a nearby device when in fact the user's device is communicating with a distant adversary. Researchers have previously proposed methods for multi-antenna devices to ascertain physical proximity with other devices, but devices with a single antenna, such as those commonly used in the Internet of Things, cannot take advantage of these techniques. We present theoretical and practical evaluation of a method called SNAP -- SiNgle Antenna Proximity -- that allows a single-antenna Wi-Fi device to quickly determine proximity with another Wi-Fi device. Our proximity detection technique leverages the repeating nature Wi-Fi's preamble and the behavior of a signal in a transmitting antenna's near-field region to detect proximity with high probability; SNAP never falsely declares proximity at ranges longer than 14 cm.
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