无源光通信的原理设计

S. Ghiasi, Marco Zúñiga, K. Langendoen
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引用次数: 20

摘要

为了利用可见光通信(VLC)在物联网标签等低功耗应用中的优势,研究人员一直在开发使用LC百叶窗调制(反向散射)环境光的系统。对于单像素发射器,已经探索了各种方法,但没有遵循原则方法。这导致了相对较低的数据速率,较短的范围,或者需要强大的人造光源。本文退一步,提出了一个更理论化的框架:ChromaLux。通过考虑液晶的基本特性(双折射和厚度),我们证明了设计空间比以前探索的要大得多,允许更好的系统。特别是,我们发现了一种瞬态的存在,在这种状态下,切换时间可以减少一个数量级,而不会显著降低对比度,从而提高了范围和数据速率。使用一个原型,我们演示了我们的框架适用于不同的lc。我们的研究结果表明,与最先进的单像素系统相比,我们的系统有了显著的改进,以1kbps的速度实现了50米的距离,误码率低于1%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A principled design for passive light communication
To take advantage of Visible Light Communication (VLC) for low-power applications, such as IoT tags, researchers have been developing systems to modulate (backscatter) ambient light using LC shutters. Various approaches have been explored for single-pixel transmitters, but without following a principled approach. This has resulted in either relatively low data rates, short ranges, or the need for powerful artificial light sources. This paper takes a step back and proposes a more theoretical framework: ChromaLux. By considering the fundamental characteristics of liquid crystals (birefringence and thickness), we demonstrate that the design space is way larger than previously explored, allowing for much better systems. In particular, we uncover the existence of a transient state where the switching time can be reduced by an order of magnitude without lowering the contrast significantly, improving both range and data rate. Using a prototype, we demonstrate that our framework is applicable to different LCs. Our results show significant improvements over state-of-the-art single-pixel systems, achieving ranges of 50 meters at 1 kbps and with bit-error-rates below 1%.
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