ToneTrack: Leveraging Frequency-Agile Radios for Time-Based Indoor Wireless Localization

Jie Xiong, K. Sundaresan, K. Jamieson
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引用次数: 282

Abstract

Indoor localization of mobile devices and tags has received much attention recently, with encouraging fine-grained localization results available with enough line-of-sight coverage and hardware infrastructure. Some of the most promising techniques analyze the time-of-arrival of incoming signals, but the limited bandwidth available to most wireless transmissions fundamentally constrains their resolution. Frequency-agile wireless networks utilize bandwidths of varying sizes and locations in a wireless band to efficiently share the wireless medium between users. ToneTrack is an indoor location system that achieves sub-meter accuracy with minimal hardware and antennas, by leveraging frequency-agile wireless networks to increase the effective bandwidth. Our novel signal combination algorithm combines time-of-arrival data from different transmissions as a mobile device hops across different channels, approaching time resolutions previously not possible with a single narrowband channel. ToneTrack's novel channel combination and spectrum identification algorithms together with the triangle inequality scheme yield superior results even in non-line-of-sight scenarios with one to two walls separating client and APs and also in the case where the direct path from mobile client to an AP is completely blocked. We implement ToneTrack on the WARP hardware radio platform and use six of them served as APs to localize Wi-Fi clients in an indoor testbed over one floor of an office building. Experimental results show that ToneTrack can achieve a median 90 cm accuracy when 20 MHz bandwidth APs overhear three packets from adjacent channels.
ToneTrack:利用频率敏捷无线电进行基于时间的室内无线定位
移动设备和标签的室内定位最近受到了很多关注,在足够的视线覆盖和硬件基础设施的情况下,可以获得令人鼓舞的细粒度定位结果。一些最有前途的技术分析了传入信号的到达时间,但是大多数无线传输的有限带宽从根本上限制了它们的分辨率。频率灵活的无线网络利用无线频带中不同大小和位置的带宽,在用户之间有效地共享无线媒体。ToneTrack是一种室内定位系统,通过利用频率灵活的无线网络来增加有效带宽,以最小的硬件和天线实现亚米精度。我们的新信号组合算法结合了来自不同传输的到达时间数据,当移动设备跨越不同的信道时,接近以前单个窄带信道不可能实现的时间分辨率。ToneTrack新颖的信道组合和频谱识别算法以及三角形不等式方案即使在客户端和AP之间隔着一到两堵墙的非视距场景中,以及从移动客户端到AP的直接路径完全受阻的情况下,也能产生出色的效果。我们在WARP硬件无线电平台上实现了ToneTrack,并使用其中的6个作为ap在办公楼一层的室内测试台上对Wi-Fi客户端进行了本地化。实验结果表明,当带宽为20 MHz的ap窃听相邻信道的3个数据包时,ToneTrack的中位数精度可达90 cm。
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