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通过实时软件定义无线电前端,在实际条件下实现 VLC 链路的强噪声抑制。

Strong Noise Rejection in VLC Links under Realistic Conditions through a Real-Time SDR Front-End.

机构信息

European Laboratory for Non-Linear Spectroscopy (LENS), University of Florence, I-50019 Sesto Fiorentino, Italy.

National Institute of Optics-CNR (CNR-INO), I-50019 Sesto Fiorentino, Italy.

出版信息

Sensors (Basel). 2023 Feb 1;23(3):1594. doi: 10.3390/s23031594.

Abstract

One of the main challenges in the deployment of visible light communication (VLC) in realistic application fields, such as intelligent transportation systems (ITSs), is represented by the presence of large background noise levels on top of the optical signal carrying the digital information. A versatile and effective digital filtering technique is, hence, crucial to face such an issue in an effective way. In this paper, we present an extensive experimental evaluation of a complete VLC system, embedding a software-defined-radio (SDR)-based digital signal processing (DSP) filter stage, which is tested either indoors, in the presence of strong artificial 100-Hz stray illumination, and outdoors, under direct sunlight. The system employs low-power automotive LED lamps, and it is tested for baud rates up to 1 Mbaud. We experimentally demonstrate that the use of the DSP technique improves 10× the performance of the VLC receiver over the original system without the filtering stage, reporting a very effective rejection of both 100-Hz and solar noise background. Indoors, the noise margin in the presence of strong 100-Hz noise is increased by up to 40 dB, whilst in the outdoor configuration, the system is capable of maintaining error-free communication in direct sunlight conditions, up to 7.5 m, improving the distance by a factor of 1.6 compared to the case without filtering. We believe that the proposed system is a very effective solution for the suppression of various types of noise effects in a large set of VLC applications.

摘要

在智能交通系统(ITS)等实际应用领域中部署可见光通信(VLC)的主要挑战之一是,在携带数字信息的光学信号上存在大的背景噪声电平。因此,一种通用且有效的数字滤波技术对于有效地解决此问题至关重要。在本文中,我们对嵌入基于软件定义无线电(SDR)的数字信号处理(DSP)滤波器级别的完整 VLC 系统进行了广泛的实验评估,该滤波器级在存在强 100Hz 杂散光的室内以及在直射阳光下的室外进行了测试。该系统采用低功率汽车 LED 灯,并针对高达 1 Mbaud 的波特率进行了测试。我们通过实验证明,与没有滤波级的原始系统相比,DSP 技术的使用将 VLC 接收器的性能提高了 10 倍,有效地抑制了 100Hz 和太阳噪声背景。在室内,在存在强 100Hz 噪声的情况下,噪声裕量增加了 40dB,而在室外配置中,该系统能够在直射阳光条件下保持无误的通信,距离可达 7.5m,与没有滤波的情况相比,距离提高了 1.6 倍。我们相信,所提出的系统是抑制大量 VLC 应用中各种类型噪声影响的非常有效解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55f2/9919532/079377da2419/sensors-23-01594-g001.jpg

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