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Space-Time-Multiplexed Multi-Image Visible Light Positioning System Exploiting Pseudo-Miller-Coding for Smart Phones

机译:时空复用多图像可见光定位系统,利用智能手机的伪米勒编码技术

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摘要

Visible light communication-based schemes utilizing LED identifiers are among the most popular candidate solutions for indoor localization applications. In this paper, we design a comprehensive imaging visible light positioning system, which exploits off-the-shelf LED lamps and commercial user equipment employing a rolling shutter aided CMOS image sensor. More specifically, we first introduce an asynchronous oversampled multi-image detection scheme inspired by the rationale of Miller coding, which efficiently solves the synchronization problem in transmissions of LED identifiers. Then, a discrete Fourier transform aided LED flicker frequency detection algorithm is detailed for robust single-image detection. Furthermore, we extend the proposed method to a space-time-multiplexing framework, which improves the overall transmission rate and solves the problem of detecting the user's moving direction. The notable advantages of the new solution are demonstrated through both practical measurements and computer simulations, exhibiting a robust transmit distance beyond three meters for continuous frames.
机译:利用LED标识符的基于可见光通信的方案是室内定位应用中最受欢迎的候选解决方案之一。在本文中,我们设计了一个全面的成像可见光定位系统,该系统利用了现成的LED灯和采用卷帘辅助CMOS图像传感器的商业用户设备。更具体地说,我们首先根据Miller编码的原理引入异步过采样多图像检测方案,该方案可以有效解决LED标识符传输中的同步问题。然后,详细介绍了用于富稳单图像检测的离散傅里叶变换辅助LED闪烁频率检测算法。此外,我们将提出的方法扩展到时空复用框架,从而提高了整体传输速率并解决了检测用户移动方向的问题。新解决方案的显着优势已通过实际测量和计算机仿真得到了证明,对于连续帧,其传输距离超过三米,显示出稳定的传输距离。

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