基于Li-Fi技术的远程自由空间通信数据传输系统评估

Omar Faruq, Kazi Rubaiyat Shahriar Rahman, Nusrat Jahan, Sakib Rokoni, Mosa Rabeya
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引用次数: 0

摘要

最灵活可靠的技术系统是Wi-Fi,它是通过使用无线电频率传输数据的无线连接实现的。然而,由于各种接入点,Wi-Fi网络遇到了与电源、可用性、效率和安全性相关的许多问题。虽然关系波描述了医疗设备,但Wi-Fi无线电产生的无线电波对患者来说非常危险。本文档提供了使用LED技术的发射器和接收器之间的视线通信。Li-Fi技术是一种使用LED灯传输音频数据的方法,它比Wi-Fi更快、更高效。由于它实际上无处不在,光也可以用于通信。一种名为光通信的尖端技术包括一个子集,称为光保真度。通过发出可见光,Li-Fi设备实现了无线局域网通信。本文对光保真(Li-Fi)进行了深入的研究和分析,这是一种利用光作为传输介质在宽光谱上高速传输数据的新技术。本文对与Li-Fi网络相关的研究领域进行了深入的分析和分类:利用Li-Fi技术在自由空间光通信系统中进行高速数据传输、接收、共享、光广播。在本文中,我们遵循了一些方法,并开发了一种独特的方法来发展这项研究:VLC、OOK、朗伯放电机制、LOS、NLOS或CMOS光学接收器。所提出的测试模型传输和接收音频、视频和其他数据,这些数据的额定值非常高,接近2GB/s的范围。
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Li-Fi technology based long range free-space communication data transmit system evaluation
The most flexible and reliable technological system is Wi-Fi, which is made possible by a wireless connection that transmits data using radio frequencies. Wi-Fi networks, however, encounter numerous issues related to power supply, availability, efficiency, and security as a result of the various access points. While relational waves describe the medical device, Wi-Fi radios produce radio waves that are very dangerous for patients. This document offers line-of-sight communication between the transmitter and receiver using LED technology. Li-Fi technology is a method that transmits audio data using LED light, which is faster and more efficient than Wi-Fi. Since it is practically ubiquitous, light can be used for communication as well. A cutting-edge technology called optical communication includes a subset called light fidelity. By sending out visible light, the Li-Fi device enables wireless intranet communication. This paper is an in-depth study and analysis of Light Fidelity (Li-Fi), a novel technology that transmits data at high speeds over a wide spectrum by using light as a medium of transmission. The research fields that are pertinent to Li-Fi networks are thoroughly analyzed and categorized in this paper: high speed data transmission, receiving, sharing, broadcasting through light in free space optical communication system by Li-Fi technology. In this paper, we followed some methods and developed a unique method to develop this study: VLC, OOK, a Lambertian discharge mechanism, LOS, NLOS, or a CMOS optical receiver. The proposed model tested transmits and receives audio, video, and other data, which is very high-rated and near the 2 GB/s range.
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来源期刊
International Review of Applied Sciences and Engineering
International Review of Applied Sciences and Engineering Materials Science-Materials Science (miscellaneous)
CiteScore
2.30
自引率
0.00%
发文量
27
审稿时长
46 weeks
期刊介绍: International Review of Applied Sciences and Engineering is a peer reviewed journal. It offers a comprehensive range of articles on all aspects of engineering and applied sciences. It provides an international and interdisciplinary platform for the exchange of ideas between engineers, researchers and scholars within the academy and industry. It covers a wide range of application areas including architecture, building services and energetics, civil engineering, electrical engineering and mechatronics, environmental engineering, mechanical engineering, material sciences, applied informatics and management sciences. The aim of the Journal is to provide a location for reporting original research results having international focus with multidisciplinary content. The published papers provide solely new basic information for designers, scholars and developers working in the mentioned fields. The papers reflect the broad categories of interest in: optimisation, simulation, modelling, control techniques, monitoring, and development of new analysis methods, equipment and system conception.
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