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从电力电子学角度看电力线通信与可见光通信集成的案例研究

A Case Study on the Integration of Powerline Communications and Visible Light Communications from a Power Electronics Perspective.

作者信息

Loose Felipe, Garcia-Meré Juan Ramón, Rosanelli Adrion Andrei, Barriquello Carlos Henrique, Alvárez José Antonio Fernandez, Rodríguez Juan, Lamar Diego González

机构信息

Department of Electrical Engineering, Electronics, Communications and Systems, University of Oviedo (UNIOVI), 33204 Gijón, Spain.

Technology Center, Federal University of Santa Maria (UFSM), Santa Maria 97105-900, Brazil.

出版信息

Sensors (Basel). 2024 Oct 14;24(20):6627. doi: 10.3390/s24206627.

Abstract

This paper presents a dual-purpose LED driver system that functions as both a lighting source and a Visible Light Communication (VLC) transmitter integrated with a Powerline Communication (PLC) network under the PRIME G3 standard. The system decodes PLC messages from the powerline grid and transmits the information via LED light to an optical receiver under a binary phase shift keying (BPSK) modulation. The load design targets a light flux of 800 lumens, suitable for LED light bulb applications up to 10 watts, ensuring practicality and energy efficiency. The Universal Asynchronous Receiver-Transmitter (UART) module enables communication between the PLC and VLC systems, allowing for an LED driver with dynamic control and real-time operation. Key signal processing stages are commented and developed, including a hybrid buck converter with modulation capabilities and a nonlinear optical receiver to regenerate the BPSK reference signal for VLC. Results show a successful prototype working under a laboratory environment. Experimental validation shows successful transmission of bit streams from the PLC grid to the VLC setup. A design guideline is presented in order to dictate the design of the electronic devices involved in the experiment. Finally, this research highlights the feasibility of integrating PLC and VLC technologies, offering an efficient and cost-effective solution for data transmission over existing infrastructure.

摘要

本文介绍了一种两用LED驱动系统,该系统作为照明源和可见光通信(VLC)发射器,与符合PRIME G3标准的电力线通信(PLC)网络集成。该系统从电力线电网解码PLC消息,并通过LED灯将信息以二进制相移键控(BPSK)调制方式发送到光接收器。负载设计目标是800流明的光通量,适用于高达10瓦的LED灯泡应用,确保实用性和能源效率。通用异步收发器(UART)模块实现了PLC和VLC系统之间的通信,使LED驱动器具有动态控制和实时操作能力。对关键信号处理阶段进行了注释和开发,包括具有调制能力的混合降压转换器和用于为VLC再生BPSK参考信号的非线性光接收器。结果表明,在实验室环境下成功制作出了原型。实验验证表明,从PLC电网到VLC装置成功传输了比特流。为指导实验中涉及的电子设备设计,给出了设计指南。最后,本研究突出了集成PLC和VLC技术的可行性,为通过现有基础设施进行数据传输提供了一种高效且经济高效的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9efd/11511521/2c4387b8491f/sensors-24-06627-g001.jpg

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