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用于基于可见光通信的物联网系统的优化模拟多频段无载波幅度和相位调制

Optimized Analog Multi-Band Carrierless Amplitude and Phase Modulation for Visible Light Communication-Based Internet of Things Systems.

作者信息

Rodrigues Luis, Figueiredo Mónica, Alves Luis Nero

机构信息

Department of Electronics, Telecommunications and Informatics, University of Aveiro, 3810-193 Aveiro, Portugal.

Instituto de Telecomunicações, Universidade de Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.

出版信息

Sensors (Basel). 2021 Apr 5;21(7):2537. doi: 10.3390/s21072537.

Abstract

This paper presents a multi-user Visible Light Communication (VLC)-based Internet of Things (IoT) system using multi band-Carrierless Amplitude and Phase (m-CAP) modulation for IoT applications. The proposed system uses a digital m-CAP modulator embedded in a ceiling LED light fixture and analog receivers, aiming at low-cost, low-power, and small-sized IoT devices. The performance was evaluated in terms of the filtering stage design and the usage of guard bands. Different pairs of emitter and receiver filters were considered. While Bessel and Butterworth analog filters were tested in the analog receiver, the digital m-CAP modulator pulse shaping filter considered raised cosine filters, as well as digital matched filters for the analog Bessel and Butterworth filters. Regarding the guard bands, two approaches were considered: either by using the raised cosine roll-off factor (bandwidth compression) or by suppressing the even bands. The Bit Error Rate (BER) performance was obtained by simulation. The usage of the Bessel filter in the receiver, along with a digital matched filter, proved to be the best solution, achieving a BER lower than 10-3 for an Eb/No of 6 dB, using a third-order filter. Furthermore, guard bands should be used in order to mitigate inter-band interference in order to have improved performance when multiple users intend to simultaneously communicate.

摘要

本文提出了一种基于多用户可见光通信(VLC)的物联网(IoT)系统,该系统使用多频段无载波幅度和相位(m-CAP)调制用于物联网应用。所提出的系统使用嵌入在天花板LED灯具中的数字m-CAP调制器和模拟接收器,目标是实现低成本、低功耗和小尺寸的物联网设备。从滤波阶段设计和保护带的使用方面对性能进行了评估。考虑了不同的发射器和接收器滤波器对。在模拟接收器中测试了贝塞尔和巴特沃斯模拟滤波器,数字m-CAP调制器脉冲整形滤波器考虑了升余弦滤波器以及针对模拟贝塞尔和巴特沃斯滤波器的数字匹配滤波器。关于保护带,考虑了两种方法:要么使用升余弦滚降因子(带宽压缩),要么抑制偶数频段。通过仿真获得误码率(BER)性能。结果表明,在接收器中使用贝塞尔滤波器以及数字匹配滤波器是最佳解决方案,使用三阶滤波器时,对于6 dB的Eb/No,实现了低于10-3的误码率。此外,当多个用户打算同时通信时,应使用保护带来减轻带间干扰,以便获得更好的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23ce/8038549/b12e04dc1419/sensors-21-02537-g001.jpg

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