创新和多功能材料作为光放大器的合作可见光通信

A. Bastos, Barry Mckenna, Tiago Silvério, L. Carlos, P. André, R. C. Evans, R. Ferreira
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引用次数: 1

摘要

发光二极管(LED)技术的最新进展创造了新一代节能光源,正在彻底改变照明市场。由于LED响应速度快,这些器件可以同时用于照明和光无线通信,使可见光通信(VLC)成为世界范围内的研究热点。由于VLC链路是自由空间,因此在实现过程中会遇到很大的挑战。为了提高VLC的性能,本工作通过使用光放大器来解决协作通信问题。在此背景下,合成了高量子产率(bbb50 %)的有机-无机杂化共轭聚合物,并将其加工成平面波导。最大增益效率值为0.73±0.01cm $\mu \ mathm {J}^{-1}$,是共轭聚合物和杂化材料的最佳增益效率值之一。波导在VLC测试床场景中进行了测试,显示信号幅度提高了1 dB,证明了所提出的方法是一种有前途的经济有效的VLC光放大解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative and multifunctional materials as optical amplifiers for cooperative visible light communications
Recent advances in light-emitting diode (LED) technology have created a new generation of energy-efficient light sources that is revolutionizing the lighting market. Due to the LED faster response, these devices can be used for illumination and for optical wireless communications, simultaneously, making visible light communication (VLC) a hot research topic worldwide. As the VLC link is free space, big challenges arise in its implementation. To improve the VLC performance, this work addresses cooperative communications by employing an optical amplifier. In this context, conjugated polymer incorporated into organic-inorganic hybrids with high quantum yield (>50%) were synthetized and processed as planar waveguides. The maximum gain efficiency values observed were 0.73±0.01cm $\mu \mathrm{J}^{-1}$, which is among the best ones known for conjugated polymers and hybrid materials. The waveguides were tested in a VLC test-in-bed scenario, showing a signal amplitude improvement of 1 dB, establishing the proposed approach as a promising cost-effective solution for optical amplification in VLCs.
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