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

机译:优化的模拟多频带载波和基于可见光通信互联网的相位调制

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摘要

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.
机译:本文介绍了一种多用户可见光通信(VLC)的内容:使用多频带传递幅度和IOT应用程序的相位(M-CAP)调制,用于物联网(IOT)系统。该系统使用嵌入天花板LED灯具和模拟接收器中的数字M-CAP调制器,旨在以低成本,低功耗和小型物联网设备。在过滤阶段设计和保护频带的使用方面评估了性能。考虑了不同的发射器和接收器过滤器。虽然在模拟接收器中测试了贝塞尔和Butterworth模拟过滤器,但数字M-CAP调制器脉冲整形过滤器被认为是凸起的余弦滤光片,以及用于模拟贝塞尔和Butterworth滤波器的数字匹配过滤器。关于保护频带,考虑了两种方法:通过使用凸起的余弦滚动因子(带宽压缩)或通过抑制均匀的带。通过模拟获得误码率(BER)性能。使用三阶滤波器,从接收器中的贝塞尔滤波器以及数字匹配滤波器的使用证明是最佳解决方案,从而实现了EB / NO中的EB / NO的10-3。此外,应该使用保护频带以减轻频段间干扰,以便在多个用户旨在同时通信时具有改进的性能。

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