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迈向使用Li-Fi技术的智能可持续城市:利用LED路灯的地理位置基础设施。

Towards smart sustainable cities using Li-Fi technology: geo-location infrastructure utilizing LED street lights.

作者信息

Albraheem Lamya, Alhudaithy Lamia, Aljaser Afnan, AlDhafian Muneerah, Bahliwah Ghada

机构信息

Department of Information Technology, College of Computer and Information Science, King Saud University, Riyadh, Saudi Arabia.

出版信息

PeerJ Comput Sci. 2022 Jul 21;8:e1009. doi: 10.7717/peerj-cs.1009. eCollection 2022.

Abstract

BACKGROUND

Cities are shifting toward providing more efficient services and the Internet of Things (IoT) becoming the future of things. The shift toward using eco-friendlier LED lights in lighting cities is another genuine game-changer in the future of Light Fidelity technology (Li-Fi). Li-Fi is a visible light communication (VLC) technology that uses Light Emitting Diodes (LED) bulbs for communication. The utilisation of thousands of light sources around a city acting as wireless access points and delivering location-based content will shift cities towards being smart sustainable cities. Recently, this technology got huge attention from the research community and different research has been conducted to improve this filed. However, there is a noticeable need to develop real-world systems that utilise Li-Fi technology.

METHODS

This article aims to contribute to developing a Geo-Li-Fi system that uses LED lights to provide the services for collecting contextual data and delivering location-based services (LBS) in different areas of the city. The system is described along with details of its design, implementation and development. Moreover, the overall set-up of the testbed that used to evaluate the proposed system is presented. In addition, an experiment is conducted using a real-world scenario to test the functionality of the system and report the outputs.

RESULTS

The effect of the system is discussed according to different aspects of sustainability which include economic, social and environmental aspects. The system was tested in indoor and outdoor environments, and it can be seen that the sunlight does not affect the ability of LEDs to deliver the content during the daytime. Regarding the transmission range of the LED lamp, it can be seen that it is affected by different factors. It depends mainly on the power of lamp, so it will be increased significantly when the power of LED is increased. Also, an increase in the beam angle will result in wider coverage area which affected by the intensity.

摘要

背景

城市正朝着提供更高效服务的方向转变,物联网(IoT)成为未来事物的发展趋势。在城市照明中转向使用更环保的LED灯是光保真技术(Li-Fi)未来的又一真正变革者。Li-Fi是一种可见光通信(VLC)技术,它使用发光二极管(LED)灯泡进行通信。城市中数千个光源用作无线接入点并提供基于位置的内容,这将推动城市向智能可持续城市转变。最近,这项技术受到了研究界的极大关注,并且已经进行了不同的研究以改进该领域。然而,明显需要开发利用Li-Fi技术的实际系统。

方法

本文旨在为开发一种地理Li-Fi系统做出贡献,该系统使用LED灯在城市的不同区域提供用于收集上下文数据和提供基于位置的服务(LBS)的服务。描述了该系统及其设计、实施和开发的细节。此外,还介绍了用于评估所提出系统的测试平台的总体设置。此外,使用实际场景进行了一项实验,以测试系统的功能并报告输出结果。

结果

根据可持续性的不同方面,包括经济、社会和环境方面,讨论了该系统的效果。该系统在室内和室外环境中进行了测试,可以看出阳光在白天不会影响LED传输内容的能力。关于LED灯的传输范围,可以看出它受到不同因素的影响。它主要取决于灯的功率,因此当LED功率增加时,传输范围将显著增加。此外,光束角的增加将导致受强度影响的覆盖区域变宽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fc1/9454865/b0eaa7a388bc/peerj-cs-08-1009-g001.jpg

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