NomLoc:无校准室内定位与游牧接入点

Jiang Xiao, Youwen Yi, Lu Wang, Haochao Li, Zimu Zhou, Kaishun Wu, L. Ni
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引用次数: 18

摘要

新兴起的室内定位服务(ILBS)与商业和公共安全相结合,为无线室内定位技术提供了广阔的发展前景。由于其普遍的基础设施(即接入点(ap))和低成本,WLAN被认为是最有可能的候选者之一。然而,空间可定位性差异问题会极大地降低总体性能,即给定任何固定AP部署,不同位置之间的定位精度可能存在显著差异。因此,它带来了用户体验的不一致性,这对ILBS是不利的。在本文中,我们提出了NomLoc -一种使用游牧ap的室内定位系统来解决性能差异问题。NomLoc的关键是利用移动ap的移动性来动态调整WLAN网络拓扑结构。为NomLoc量身定制了一种基于空间划分(SP)的定位算法,实现了无需校准的定位。此外,采用细粒度信道状态信息(CSI)来缓解基于sp的方法由于多径和非视距(NLOS)效应而导致的性能下降。我们已经使用现成的设备实现了NomLoc系统,并在两个典型的室内环境中评估了性能。结果表明,与静态AP部署相比,NomLoc在移动AP的辅助下可以显著降低空间可定位性差异,提高定位精度。此外,该方法对移动ap的位置误差具有较强的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NomLoc: Calibration-Free Indoor Localization with Nomadic Access Points
Newly popular indoor location-based services (ILBS), when integrated with commerce and public safety, offer a promising land for wireless indoor localization technologies. WLAN is suggested to be one of the most potential candidates owing to its prevalent infrastructure (i.e., access points (APs)) and low cost. However, the overall performance can be greatly degraded by the spatial localizability variance problem, i.e., the localization accuracy across various locations may have significant differences given any fixed AP deployment. As a result, it brings in user experience inconsistency which is unfavorable for ILBS. In this paper, we propose NomLoc - an indoor localization system using nomadic APs to address the performance variance problem. The key insight of NomLoc is to leverage the mobility of nomadic APs to dynamically adjust the WLAN network topology. A space partition (SP)-based localization algorithm is tailored for NomLoc to perform calibration-free positioning. Moreover, fine-grained channel state information (CSI) is employed to mitigate the performance degradation of the SP-based method due to multipath and none-line-of-sight (NLOS) effects. We have implemented the NomLoc system with off-the-shelf devices and evaluated the performance in two typical indoor environments. The results show that NomLoc can greatly mitigate spatial localizability variance and improve localization accuracy with the assistance of nomadic APs as compared with the corresponding static AP deployment. Moreover, it is robust to the position error of nomadic APs.
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