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基于图像传感器的可见光定位与行人航位推算的混合室内定位方案

Hybrid indoor localization scheme with image sensor-based visible light positioning and pedestrian dead reckoning.

作者信息

Huang Heqing, Lin Bo, Feng Lihui, Lv Huichao

出版信息

Appl Opt. 2019 Apr 20;58(12):3214-3221. doi: 10.1364/AO.58.003214.

Abstract

In this paper, we propose a hybrid indoor localization scheme with image sensor-based visible light positioning and pedestrian dead reckoning. The architecture and algorithm of the proposed positioning scheme are analyzed. We build and demonstrate two different positioning prototypes with single/multiple cells, which are based on a commercial light-emitting diode lamp and off-the-shelf mobile phone equipped with an image sensor and inertial measurement unit. Experimental results show that the proposed visible light positioning scheme can achieve both cell recognition and three-dimensional positioning with a single captured image of a single light source, and the positioning error is only several centimeters. Moreover, with the proposed hybrid positioning algorithm consisting of visible light positioning and pedestrian dead reckoning, we achieved real-time decimeter-level indoor location tracking continuously and robustly with sparse light-source beacons in an actual indoor scenario.

摘要

在本文中,我们提出了一种结合基于图像传感器的可见光定位和行人航位推算的混合室内定位方案。分析了所提出定位方案的架构和算法。我们构建并演示了两种不同的单/多单元定位原型,它们基于商用发光二极管灯以及配备图像传感器和惯性测量单元的现成手机。实验结果表明,所提出的可见光定位方案利用单个光源的单张捕获图像即可实现单元识别和三维定位,并且定位误差仅为几厘米。此外,通过所提出的由可见光定位和行人航位推算组成的混合定位算法,我们在实际室内场景中使用稀疏光源信标连续且稳健地实现了实时分米级室内位置跟踪。

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