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Light positioning: A high-accuracy visible light indoor positioning system based on attitude identification and propagation model:

机译:灯光定位:基于姿态识别和传播模型的高精度可见光室内定位系统:

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摘要

With the booming development of green lighting technology, visible light-based indoor localization has attracted a lot of attention. Visible light-based indoor positioning technology leverages a light propagation model to pinpoint target location. Compared with the radio localization technology, visible light-based indoor positioning not only can achieve higher location accuracy, but also no electromagnetic interference. In this article, we propose LIPOS, a three-dimensional indoor positioning system based on attitude identification and visible light propagation model. The LIPOS system takes advantage of the existing lighting infrastructures to localize mobile devices that have light-sensing capabilities (e.g. a smartphone) using light emitting diode lamps as anchors. The system can accurately identify the attitude of a smartphone using its integrated sensors, distinguish different light emitting diode beacons using the fast Fourier transform algorithm, construct a position cost-function based on a visible light radiative decay model, and apply a nonlinear optimizing method to acquire the optimal estimation of final location. We have implemented the LIPOS system and evaluated it with a small-scale hardware testbed, as well as moderate-sized simulations. Extensive experiments are performed in three representative indoor environments—open-plan office, cubicle, and corridor, which not only demonstrate that the LIPOS can effectively avoid the negative effects of dynamic change of a smartphone’s attitude angle, but also show better locating accuracy and robustness, and obtain sub-meter level positioning accuracy.
机译:随着绿色照明技术的蓬勃发展,基于可见光的室内定位已引起了广泛的关注。基于可见光的室内定位技术利用光传播模型来精确定位目标位置。与无线电定位技术相比,基于可见光的室内定位不仅可以实现更高的定位精度,而且没有电磁干扰。在本文中,我们提出基于姿态识别和可见光传播模型的三维室内定位系统LIPOS。 LIPOS系统利用现有的照明基础设施来定位具有光感应功能的移动设备(例如智能手机),并使用发光二极管灯作为锚点。该系统可以使用其集成的传感器准确地识别智能手机的姿态,使用快速傅里叶变换算法来区分不同的发光二极管信标,基于可见光辐射衰减模型构造位置成本函数,并将非线性优化方法应用于获取最终位置的最佳估计。我们已经实施了LIPOS系统,并使用小型硬件测试平台以及中等规模的仿真对其进行了评估。在三个有代表性的室内环境中进行了广泛的实验-开放式办公室,小卧室和走廊,这不仅表明LIPOS可以有效避免智能手机姿态角动态变化的负面影响,而且还具有更好的定位精度和鲁棒性,并获得亚米级的定位精度。

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