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一种用于可见光通信的基于量子点的叠加光学天线:白色发光二极管光源。

A Superimposed QD-Based Optical Antenna for VLC: White LED Source.

作者信息

Chamani Shaghayegh, Rostami Ali, Mirtaheri Peyman

机构信息

Photonics and Nanocrystal Research Laboratory (PNRL), University of Tabriz, Tabriz 5166614761, Iran.

SP-EPT Laboratory, ASEPE Company, Industrial Park of Advanced Technologies, Tabriz 5169654916, Iran.

出版信息

Nanomaterials (Basel). 2022 Jul 27;12(15):2573. doi: 10.3390/nano12152573.

Abstract

Visible light communication (VLC) is a versatile enabling technology for following high-speed wireless communication because of its broad unlicensed spectrum. In this perspective, white light-emitting diodes (LED) provide both illumination and data transmission simultaneously. To accomplish a VLC system, receiver antennas play a crucial role in receiving light signals and guiding them toward a photodetector to be converted into electrical signals. This paper demonstrates an optical receiver antenna based on luminescent solar concentrator (LSC) technology to exceed the conservation of etendue and reach a high signal-to-noise ratio. This optical antenna is compatible with all colors of LEDs and achieves an optical efficiency of 3.75%, which is considerably higher than the similar reported antenna. This antenna is fast due to the small attached photodetector-small enough that it can be adapted for electronic devices-which does not need any tracking system. Moreover, numerical simulation is performed using a Monte Carlo ray-tracing model, and results are extracted in the spectral domain. Finally, the fate of each photon and the chromaticity diagram of the collected photons' spectra are specified.

摘要

可见光通信(VLC)由于其广阔的免授权频谱,是一种用于高速无线通信的通用使能技术。从这个角度来看,白光发光二极管(LED)可同时提供照明和数据传输。为实现一个VLC系统,接收天线在接收光信号并将其导向光电探测器以转换为电信号方面起着至关重要的作用。本文展示了一种基于发光太阳能聚光器(LSC)技术的光接收天线,以突破 étendue 守恒并达到高信噪比。这种光天线与所有颜色的LED兼容,实现了3.75%的光学效率,这比类似报道的天线要高得多。由于所连接的光电探测器体积小,该天线速度快——小到足以适用于电子设备——且不需要任何跟踪系统。此外,使用蒙特卡罗光线追踪模型进行了数值模拟,并在光谱域中提取了结果。最后,确定了每个光子的命运以及收集到的光子光谱的色度图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a98d/9370452/62b3c7c24f53/nanomaterials-12-02573-g001a.jpg

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