混合RoF-VLC网络的集成与评价

M. T. Rahman, R. Parthiban, M. Bakaul
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引用次数: 5

摘要

光纤无线可视光通信(RoF-VLC)可以成为一项开创性的技术,为室内无线通信提供无处不在的无线接入。本文通过仿真,提出了一种采用10km光纤和多个led的室内VLC系统。采用开关键控(OOK)或16 QAM-OFDM调制的灰度编码输入序列进行数据传输。无线电信号分别使用OOK和16 QAM-OFDM传输1.5 Gb/s和2.5 Gb/s的数据。来自10公里光纤的信号被发送到带有红、绿、蓝、黄(RGBY) led的接入点,每个led的调制带宽为~50 MHz。滤波器如高斯滤波器、贝塞尔滤波器、梯形滤波器和矩形滤波器被用来增加led的调制带宽。使用OOK和16QAM-OFDM, VLC接收器可以实现的最大数据速率分别为400 Mb/s和3.2 Gb/s。本文还测量了滤波器和光束收敛对误码率的影响。波束收敛对短距离应用很重要。使用本文提出的rof - vlc得到的结果比该领域以往的研究结果更好。
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Integration and Evaluation of Hybrid RoF-VLC Network
Radio over fiber with visible light communications (RoF-VLC) can be a pioneering technology to provide ubiquitous wireless access for indoor wireless communication. In this paper, we propose a new RoF-VLC system using 10km fiber and multiple LEDs for indoor VLC through simulation. Gray coded input sequence with either On-Off Keying (OOK) or 16 QAM-OFDM modulated was used for data transmission. Radio signals transmit 1.5 Gb/s and 2.5 Gb/s data using OOK and16 QAM-OFDM, respectively. The signal from the 10 km fiber is sent to an access point with red, green, blue and yellow (RGBY) LEDs each with ~50 MHz modulation bandwidth. Filters such as Gaussian, Bessel, Trapezoidal, and Rectangle are used to increase the modulation bandwidth of LEDs. The maximum data rates that can be achieved at the VLC receiver is 400 Mb/s and 3.2 Gb/s using OOK and 16QAM-OFDM, respectively. The effect of filters and beam convergence on BER is also measured in this paper. Beam convergence is important for short range applications. The results obtained using the RoF-Vlcproposed in this paper are better compared to the ones in previous works in this area.
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