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基于开关模式直流-直流转换器的高效可见光通信发射机。

Efficient Visible Light Communication Transmitters Based on Switching-Mode dc-dc Converters.

作者信息

Rodríguez Juan, Lamar Diego G, Aller Daniel G, Miaja Pablo F, Sebastián Javier

机构信息

Power Supply Group, Electrical Engineering Department, University of Oviedo, Gijón 33204, Spain.

Power Systems Division, European Space Agency (ESA), Noordwijk 2201AZ, The Netherlands.

出版信息

Sensors (Basel). 2018 Apr 7;18(4):1127. doi: 10.3390/s18041127.

Abstract

Visible light communication (VLC) based on solid-state lighting (SSL) is a promising option either to supplement or to substitute existing radio frequency (RF) wireless communication in indoor environments. VLC systems take advantage of the fast modulation of the visible light that light emitting diodes (LEDs) enable. The switching-mode dc-to-dc converter (SMC) must be the cornerstone of the LED driver of VLC transmitters in order to incorporate the communication functionality into LED lighting, keeping high power efficiency. However, the new requirements related to the communication, especially the high bandwidth that the LED driver must achieve, converts the design of the SMC into a very challenging task. In this work, three different methods for achieving such a high bandwidth with an SMC are presented: increasing the order of the SMC output filter, increasing the number of voltage inputs, and increasing the number of phases. These three strategies are combinable and the optimum design depends on the particular VLC application, which determines the requirements of the VLC transmitter. As an example, an experimental VLC transmitter based on a two-phase buck converter with a fourth-order output filter will demonstrate that a bandwidth of several hundred kilohertz (kHz) can be achieved with output power levels close to 10 W and power efficiencies between 85% and 90%. In conclusion, the design strategy presented allows us to incorporate VLC into SSL, achieving high bit rates without damaging the power efficiency of LED lighting.

摘要

基于固态照明(SSL)的可见光通信(VLC)是一种很有前景的选择,可用于补充或替代室内环境中现有的射频(RF)无线通信。VLC系统利用发光二极管(LED)实现的可见光快速调制。为了将通信功能集成到LED照明中并保持高功率效率,开关模式DC-DC转换器(SMC)必须是VLC发射器LED驱动器的基石。然而,与通信相关的新要求,特别是LED驱动器必须实现的高带宽,使得SMC的设计成为一项极具挑战性的任务。在这项工作中,提出了三种使用SMC实现高带宽的不同方法:增加SMC输出滤波器的阶数、增加电压输入的数量以及增加相数。这三种策略可以组合,最佳设计取决于特定的VLC应用,该应用决定了VLC发射器的要求。例如,一个基于具有四阶输出滤波器的两相降压转换器的实验性VLC发射器将证明,在输出功率水平接近10W且功率效率在85%至90%之间时,可以实现几百千赫兹(kHz)的带宽。总之,所提出的设计策略使我们能够将VLC集成到SSL中,在不损害LED照明功率效率的情况下实现高比特率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aec4/5948605/2f0831e6ef36/sensors-18-01127-g001.jpg

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