Performance Improvement of White LED-Based VLC Systems Using Blue and Flattening Filters

S. C. Tokgoz, Noha Anous, Serhan Yarkan, D. Khalil, K. Qaraqe
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引用次数: 6

Abstract

This paper proposes a means to maximize the data rate supported by a visible light communication (VLC) system. The investigated VLC system uses phosphor-coated white light emitting diodes (LEDs), which are common in existing illumination systems but are also known to limit the communication system's data rate. In this paper, we propose a remedy to such a limitation by adding a response-flattening filter at the receiver's end to mitigate the effect of the slow yellow phosphor spectral component. An experimental study is conducted to evaluate the validity of the proposed remedy. The resulting performance is compared with an existing remedy that involves adding a blue filter at the receiver. Off-the-shelf commercial filters are used in the experiment. Enhanced bit-error-rates (BERs) and signal-to-noise ratios (SNRs) at high data rates are observed. Specifically, our experimental work demonstrates that BER is enhanced by 40% and 15% for data rates up to 12 Mbps when responseflattenina filter and blue filter are adopted, respectively.
利用蓝滤光片和压平滤光片改善白光led VLC系统的性能
本文提出了一种使可见光通信(VLC)系统支持的数据速率最大化的方法。所研究的VLC系统使用磷光涂层白光发光二极管(led),这在现有的照明系统中很常见,但也已知会限制通信系统的数据速率。在本文中,我们提出了一种补救措施,通过在接收器端添加响应平坦化滤波器来减轻慢黄色荧光粉光谱成分的影响。进行了一项实验研究,以评估所提出的补救措施的有效性。所得到的性能与现有的补救措施进行了比较,该补救措施涉及在接收器上添加蓝色滤波器。实验中使用了现成的商用过滤器。在高数据速率下,观察到增强的误码率(ber)和信噪比(SNRs)。具体来说,我们的实验工作表明,当采用响应平坦滤波器和蓝色滤波器时,数据速率高达12 Mbps时,误码率分别提高了40%和15%。
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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