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Achieving Centimeter-Accuracy Indoor Localization on WiFi Platforms: A Frequency Hopping Approach

机译:在WiFi平台上实现厘米级的室内定位:一种跳频方法

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Indoor positioning systems (IPSs) are attracting more and more attention from the academia and industry recently. Among them, approaches based on WiFi techniques are more favorable since they are built upon the WiFi infrastructures available in most indoor spaces. However, due to the bandwidth limit in mainstream WiFi systems, the IPS leveraging WiFi can hardly achieve centimeter localization accuracy under strong nonline-of-sight (NLOS) conditions which is common for indoor environment. In this paper, to achieve the centimeter-level accuracy, we present a WiFi-based IPS that exploits the frequency diversity via frequency hopping. In the offline phase, the system collects channel frequency responses (CFRs) from multiple channels and from a number of locations-of-interest. Then, the CFRs are post-processed to mitigate the synchronization errors as well as interference from other WiFi networks. Then, using bandwidth concatenation, the CFRs from multiple channels are combined into location fingerprints which are stored into a local database. During the online phase, CFRs are formulated into the location fingerprint and is compared against the fingerprints in the database via the time-reversal resonating strength (TRRS). Finally, the IPS determines the location according to the TRRS. Extensive experiment results demonstrate a perfect centimeter-level accuracy in an office environment with strong NLOS using only one pair of single-antenna WiFi devices.
机译:最近,室内定位系统(IPS)引起了学术界和行业的越来越多的关注。其中,基于WiFi技术的方法更为有利,因为它们是建立在大多数室内空间中可用的WiFi基础设施之上的。但是,由于主流WiFi系统的带宽限制,利用WiFi的IPS在室内环境常见的强视线(NLOS)条件下几乎无法达到厘米的定位精度。在本文中,为了达到厘米级的精度,我们提出了一种基于WiFi的IPS,该IPS通过跳频来利用频率分集。在离线阶段,系统从多个频道和多个感兴趣的位置收集频道频率响应(CFR)。然后,对CFR进行后处理以减轻同步错误以及来自其他WiFi网络的干扰。然后,使用带宽串联,将来自多个通道的CFR组合为位置指纹,这些指纹存储在本地数据库中。在在线阶段,将CFR配制成位置指纹,并通过时间反转共振强度(TRRS)与数据库中的指纹进行比较。最后,IPS根据TRRS确定位置。大量的实验结果表明,仅使用一对单天线WiFi设备,在具有强大NLOS的办公环境中,就可以达到完美的厘米级精度。

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