Shi Jin, He Jing, He Jing, Deng Rui, Wei Yiran, Long Fengting, Cheng Yun, Chen Lin
Opt Express. 2017 Jul 10;25(14):15905-15912. doi: 10.1364/OE.25.015905.
Visible light communication (VLC) with light emitting diodes (LEDs) is an emerging technology for 5G wireless communications. Recently, using complementary metal-oxide-semiconductor (CMOS) image sensor as VLC receiver is developed owing to its flexibility and low-cost. However, two illumination levels such as on-off keying (OOK) signal are used. To improve the system throughput and reduce complexity of the hardware design, in this paper, we propose and experimentally demonstrate a multilevel modulation scheme for VLC system utilizing the overlapping of two light sources for the first time, and the two light sources are modulated by an OOK and a Manchester signal respectively. At the receiver, a CMOS camera can demodulate the Manchester and the OOK signal simultaneously. Meanwhile, a low-pass filter (LPF) is used to enhance the system performance. The experimental results demonstrate that the proposed multilevel modulation scheme can achieve a net data rate of 4.32 kbit/s.
基于发光二极管(LED)的可见光通信(VLC)是一种用于5G无线通信的新兴技术。近来,由于其灵活性和低成本,利用互补金属氧化物半导体(CMOS)图像传感器作为VLC接收器的技术得到了发展。然而,目前使用的是诸如开关键控(OOK)信号之类的两种照明级别。为了提高系统吞吐量并降低硬件设计的复杂度,在本文中,我们首次提出并通过实验证明了一种用于VLC系统的多级调制方案,该方案利用两个光源的重叠,并且这两个光源分别由一个OOK信号和一个曼彻斯特信号进行调制。在接收器端,一个CMOS相机可以同时解调曼彻斯特信号和OOK信号。同时,使用一个低通滤波器(LPF)来提高系统性能。实验结果表明,所提出的多级调制方案能够实现4.32 kbit/s的净数据速率。