Self-synchronizing on-off-keying visible light communication system for intra- and inter-vehicle data transmission

IF 1 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC SAIEE Africa Research Journal Pub Date : 2024-03-08 DOI:10.23919/SAIEE.2024.10463748
S. Achari;A. Y. Yang;J. Goodhead;B. Swanepoel;L. Cheng
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Abstract

Visible light communication is a present technology which allows data to be transmitted by modulating information onto a light source. It has many advantages over traditional radio frequency communication and up to 10,000 times larger bandwidth. Many existing research in visible light communication assumes a synchronized channel, however, this is not always easily achieved. This paper proposes a novel synchronized VLC system with the potential to ensure reliable communication in both intra- and inter-vehicle communication. The protocol achieves synchronization at the symbol level using the transistor-transistor logic protocol and achieves frame synchronizations with markers. Consequently, the deployment of the system in both intra- and inter-vehicle communication may present numerous advantages over existing data transmission processes. A practical application where visible light communication is used for media streaming is also previewed. In addition, various regions of possible data transmission are determined to infer forward error correction schemes to ensure reliable communication.
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用于车内和车间数据传输的自同步开关键控可见光通信系统
可见光通信是目前一种通过将信息调制到光源上进行数据传输的技术。与传统的射频通信相比,可见光通信具有许多优势,其带宽最高可达 10,000 倍。现有的许多可见光通信研究都假设有一个同步信道,但这并不容易实现。本文提出了一种新型同步 VLC 系统,有望确保车内和车际通信的可靠性。该协议使用晶体管-晶体管逻辑协议实现符号级同步,并通过标记实现帧同步。因此,与现有的数据传输流程相比,在车内和车际通信中部署该系统具有诸多优势。此外,还预览了将可见光通信用于媒体流的实际应用。此外,还确定了各种可能的数据传输区域,以推断前向纠错方案,确保通信的可靠性。
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来源期刊
SAIEE Africa Research Journal
SAIEE Africa Research Journal ENGINEERING, ELECTRICAL & ELECTRONIC-
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Back cover Table of contents Front cover Notes Interval type-II fuzzy logic control of neutral DC compensation method to moderate DC bias in power transformer
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