利用a-SiC:H光电探测器通过VLC技术进行室内定位

P. Louro, J. Costa, M. Vieira, M. Vieira
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引用次数: 7

摘要

本文提出的工作支持了基于可见光通信(VLC)的室内应用导航系统的可行性。系统设计采用RGB led和a:SiC:H光电探测器。提出了集成系统中使用的器件的光电特性来支持主要结果,即解码策略。光电探测器是一个引脚异质结构,作为一个光学滤波器,呈现一个选择性的光谱灵敏度依赖于外部光学偏置。白色RGB led发出的红光和蓝光以不同的频率调制。通过这种配置,每个基本方向被分配到一组特定的光激发(波长和频率)。所述输出光电流的解码允许识别所述输入光信号并确定相应的空间方向。定位算法利用傅里叶变换识别光电流信号中存在的频率以及传感器在前后光偏置下的波长滤波特性来检测现有的红色和蓝色信号。通过实现自动推断光电探测器基本方向的算法,证明了该系统的可行性。此外,还研究了光强对沿基本方向空间定位精度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indoors positioning through VLC technology using an a-SiC:H photodetector
The work presented in this paper supports the viability of a navigation system based on Visible Light Communication (VLC) for indoors applications. The system design uses RGB LEDs and an a:SiC:H photodetector. An optoelectronic characterization of the devices used in the integrated system is presented to support the main results, namely the decoding strategy. The photodetector is a pin-pin heterostructure that works as an optical filter, presenting a selective spectral sensitivity dependent on the external optical bias. The red and blue light emitted from the white RGB LEDs were modulated at different frequencies. With this configuration each cardinal direction becomes assigned to a specific set of optical excitation (wavelength and frequency). The decoding of the output photocurrent allows the identification of the input optical signals and the determination of the correspondent spatial direction. The localization algorithm makes use of the Fourier transform to identify the frequencies present in the photocurrent signal and the wavelength filtering properties of the sensor under front and back optical bias to detect the existing red and blue signals. The viability of the system is demonstrated through the implementation of an automatic algorithm to infer the photodetector cardinal direction. Additional research on the light intensity is presented to investigate the accuracy of the spatial position along a cardinal direction.
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