Hou Yuqi, Wang Zhichong, Li Zengxin, Hu Junhui, Ma Chicheng, Wang Xiaoqian, Xia Liang, Liu Guangyi, Shi Jianyang, Li Ziwei, Zhang Junwen, Chi Nan, Shen Chao
Key Laboratory for Information Science of Electromagnetic Waves (MoE), School of Information Science and Technology, Fudan University, Shanghai 200433, China.
ZGC Institute of Ubiquitous-X Innovation and Applications, Beijing 100876, China.
Sensors (Basel). 2024 May 13;24(10):3086. doi: 10.3390/s24103086.
Mobile visible light communication (VLC) is key for integrating lighting and communication applications in the 6G era, yet there exists a notable gap in experimental research on mobile VLC. In this study, we introduce a mobile VLC system and investigate the impact of mobility speed on communication performance. Leveraging a laser-based light transmitter with a wide coverage, we enable a light fidelity (LiFi) system with a mobile receiving end. The system is capable of supporting distances from 1 m to 4 m without a lens and could maintain a transmission rate of 500 Mbps. The transmission is stable at distances of 1 m and 2 m, but an increase in distance and speed introduces interference to the system, leading to a rise in the Bit Error Rate (BER). The mobile VLC experimental system provides a viable solution to the issue of mobile access in the integration of lighting and communication applications, establishing a solid practical foundation for future research.
移动可见光通信(VLC)是6G时代集成照明和通信应用的关键,但在移动VLC的实验研究方面存在显著差距。在本研究中,我们介绍了一种移动VLC系统,并研究了移动速度对通信性能的影响。利用具有广泛覆盖范围的基于激光的光发射器,我们实现了一个带有移动接收端的光保真(LiFi)系统。该系统在没有透镜的情况下能够支持1米至4米的距离,并且可以保持500 Mbps的传输速率。在1米和2米的距离处传输稳定,但距离和速度的增加会给系统带来干扰,导致误码率(BER)上升。该移动VLC实验系统为照明和通信应用集成中的移动接入问题提供了一个可行的解决方案,为未来的研究奠定了坚实的实践基础。