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A Multimode Fusion Visible Light Localization Algorithm using Ambient Lights

机译:使用环境灯的多模融合可见光定位算法

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With the booming development of green lighting technologies, ubiquitous lighting infrastructures make visible light positioning (VLP) become a promising technology for indoor localization and navigation. However, most existing VLP systems use modulated LEDs as anchors for target localization. LEDs with its customized hardware and modulated information greatly prevent VLP systems from large-scale deployment and limit their widespread applications. Moreover, some VLP systems have the disadvantage of imposing strong restrictions on smartphone such as fixed phone orientation, which is not practical for real-life use. In this paper, we propose a ubiquitous visible light localization (LiLoc) algorithm using ambient lights based on augmented particle filter algorithm. LiLoc directly uses the light intensity fingerprint of ambient light sources (e.g., fluorescent, incandescent, and LEDs) to estimate target location without obtaining modulation information of light sources in buildings. To improve localization accuracy, we introduce a light-intensity trajectory fingerprint matching scheme to calibrate target position. We also develop a beacon identification algorithm based on the inherent visual features of light sources, which are determined by specific manufacturing variations. We combine beacon identification algorithm with PDR to estimate target position in terrible illumination environment (e.g., sunlight interference, beacons sparse deployment, individual beacon damaged/closed, or training fingerprint missing).To reduce power consumption, we design adaptive scheduling mechanism to invoke corresponding algorithms based on the detection result of sunlight interference. The experimental results demonstrate that LiLoc can achieve medium localization errors of 2.2 m in a complex lighting environment with various light sources and sunlight interference.
机译:随着绿色照明技术的蓬勃发展,无处不在的照明基础设施使可见光定位(VLP)成为室内定位和导航有前途的技术。然而,大多数现有的VLP的系统使用的调制LED作为锚目标定位。其定制的硬件和调制的信息指示灯大大防止大规模部署VLP系统并限制其广泛的应用。此外,一些VLP系统有气势如固定电话的方向,这是不是现实生活中的实际使用智能手机上的限制强的缺点。在本文中,我们使用基于增强粒子滤波算法环境光提出一种普遍存在的可见光定位(LiLoc)算法。 LiLoc直接使用的环境光源(例如,荧光灯,白炽灯,和LED)的光强度指纹未取得的建筑物中的光源调制信息来估计目标位置。为了提高定位精度,我们引入一个光强度轨迹指纹匹配方案来校准目标位置。我们还开发了基于光源,其通过特定制造变化所确定的固有的视觉特征的信标辨识算法。我们结合的信标PDR识别算法来估算可怕的照明环境中(例如,太阳光的干扰,信标稀疏部署,个人灯塔损坏/关闭,或培训指纹缺失)。为了降低功耗,我们设计的自适应调度机制来调用相应的目标位置根据太阳光的干扰检测结果的算法。实验结果表明,LiLoc可以实现与各种光源和太阳光的干扰的复杂的照明环境的2.2米介质定位误差。

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