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用于基于室内摄像头的定位系统的稳健可见光通信信标识别

Robust VLC Beacon Identification for Indoor Camera-Based Localization Systems.

作者信息

Rátosi Márk, Simon Gyula

机构信息

Department of Computer Science and Systems Technology, University of Pannonia, 8200 Veszprém, Hungary.

Alba Regia Technical Faculty, Óbuda University, 8000 Székesfehérvár, Hungary.

出版信息

Sensors (Basel). 2020 Apr 29;20(9):2522. doi: 10.3390/s20092522.

Abstract

Several industrial indoor positioning systems utilize LEDs as beacons and cameras as sensors: The LED beacons transmit their identity, using various means of visible light communication (VLC) techniques. To avoid flickering effects, the transmission frequency is usually much higher than the sampling frequency of ordinary cameras, thus undersampling occurs. In this paper, a potential problem of undersampled protocols is highlighted: If the transmitter and receiver are not synchronized, the frequency slip between the transmitter and receiver clocks will periodically cause a burst of potential decoding errors. If the frequency slip is small (i.e., good-quality clocks are used in both the transmitter and the receiver), the time between bursts of errors is longer but at the same time the length of the bursts are also longer. An error analysis is provided as a function of protocol parameters and various error sources. Based on the results the robust-undersampled phase-shift on-off keying (UPSOOK) protocol is introduced, which guarantees the correct operation even in the presence of clock inaccuracies, as well as other error sources such as sensor noise, jitter, camera saturation, without the utilization of any error correcting codes. The properties of the proposed robust-UPSOOK protocol are demonstrated using simulations and measurements.

摘要

几种工业室内定位系统利用发光二极管(LED)作为信标,摄像头作为传感器:LED信标使用各种可见光通信(VLC)技术来传输其身份信息。为避免闪烁效应,传输频率通常远高于普通摄像头的采样频率,从而出现欠采样情况。本文强调了欠采样协议的一个潜在问题:如果发射器和接收器不同步,发射器和接收器时钟之间的频率偏差将周期性地导致一阵潜在的解码错误。如果频率偏差较小(即发射器和接收器都使用高质量时钟),错误突发之间的时间间隔会更长,但同时突发的长度也会更长。本文给出了作为协议参数和各种误差源函数的误差分析。基于这些结果,引入了鲁棒欠采样相移开关键控(UPSOOK)协议,该协议即使在存在时钟不准确以及其他误差源(如传感器噪声、抖动、摄像头饱和)的情况下,也能保证正确运行,且无需使用任何纠错码。通过仿真和测量展示了所提出的鲁棒UPSOOK协议的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3f1/7249008/529b6fc14246/sensors-20-02522-g001.jpg

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