Potential and challenges of visible light communication for industrial assembly lines with mobile workstations

Véronique Georlette, Juan Sánchez Melgarejo, S. Bette, Nicolas Point, V. Moeyaert
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引用次数: 5

Abstract

The popularisation of LED technology has enabled the development of new optical telecommunication technologies. The most popular in this sector is Visible Light Communication (VLC). It uses the visible part of the spectrum to send data and illuminate simultaneously. At the same time, as industries increasingly install mobile equipment on their assembly lines, there is a demand in this market for reliable and robust communication technology. The advantage of VLC compared to Radio Frequency (RF) technology in the industry is its immunity to electromagnetic interference as most industrial facilities are built in metal. This paper presents the foundations of an innovative solution to meet the needs of mobile assembly lines. In this example, the VLC system has the dual role of illuminating the operator or robot and communicating to and from a central controller. A two-way system, called Li-Fi that uses a downstream communication in visible light and the upstream in infrared, has been chosen. The work presented demonstrates, through the results of a simulator, that this technology can meet mobile assembly line requirements in terms of communication.
具有移动工作站的工业装配线可见光通信的潜力和挑战
LED技术的普及促进了新型光通信技术的发展。在这个领域最受欢迎的是可见光通信(VLC)。它使用光谱的可见部分来发送数据并同时照明。与此同时,随着越来越多的行业在装配线上安装移动设备,这个市场对可靠和强大的通信技术有需求。与射频(RF)技术相比,VLC在工业上的优势在于它对电磁干扰的免疫力,因为大多数工业设施都是用金属建造的。本文提出了一种创新解决方案的基础,以满足移动装配线的需求。在这个例子中,VLC系统具有双重作用,即照亮操作员或机器人,并与中央控制器进行通信。他们选择了一种名为Li-Fi的双向系统,该系统使用可见光的下游通信和红外线的上游通信。通过仿真结果表明,该技术在通信方面可以满足移动装配线的要求。
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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