Bandwidth extension of an enhanced SNR with a higher light uniformity of a phosphorescent white LED based visible light communication system

Monette H. Khadr, H. Fayed, A. A. E. Aziz, M. Aly
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引用次数: 13

Abstract

This paper increases the bandwidth of a phosphorescent white light emitting diode (LED) employed in an indoor visible light communication (VLC) system. A new distribution pattern for the same number of used LEDs increased the signal to noise ratio (SNR) and enhanced the uniformity of the illumination. The indoor VLC system is modelled using the proposed pattern and the theoretical analysis is presented. Compared to other studied patterns, the average power received was increased from 1.62 dBm to 3.17 dBm, simulations using MATLAB show the improvement in the power received distribution within the room. The maximum bit error rate (BER) at a data rate of 30 Mb/s was also reduced from 3.26 × 10-25 to 1.59 × 10-25. A proposed design to the equalization circuit at the transmitter end was also presented that was able to extend the VLC link bandwidth from a few Megahertz (MHz) to 325 MHz.
带宽扩展增强信噪比与更高的光均匀性的磷光白光LED可见光通信系统
本文对室内可见光通信(VLC)系统中使用的磷光白光二极管(LED)的带宽进行了改进。在使用相同数量的led的情况下,新的分布模式提高了信噪比(SNR),增强了照明的均匀性。利用所提出的模式对室内VLC系统进行了建模,并进行了理论分析。与其他研究模式相比,平均接收功率从1.62 dBm增加到3.17 dBm,利用MATLAB仿真表明,房间内接收功率分布得到改善。数据速率为30mb /s时的最大误码率(BER)也从3.26 × 10-25降低到1.59 × 10-25。提出了一种能够将VLC链路带宽从几兆赫兹(MHz)扩展到325兆赫兹的发射端均衡电路设计方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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