基于光纤通信链路的单片机/WDM系统模型

M. Arief, S. M. Idrus, S. Alifah
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引用次数: 10

摘要

子载波复用(SCM)是将多个射频(RF)携带的信号通过单一波长的光纤进行传输。单片机在光通信中最显著的优势是它能够将不同的光载波紧密地放在一起。另一方面,波分复用(WDM)是发射器上的多路复用器,用于将信号连接在一起,接收器上的解路复用器用于将它们分开。在波分复用技术中,每个激光以给定的速度调制,沿高带宽光纤传输的总总容量是各个激光器比特率的总和。在这项工作中,我们研究了这种情况下的各种问题,以便通过电气和光学组件的可用带宽为高速数据速率提供经济高效的高性能解决方案。因此,单片机必须与WDM一起使用,以利用光纤带宽的任何显著部分。结果表明,采用单片机/波分复用技术实现光纤无线通信,可为150公里的远程通信系统提供更高的带宽。因此,单片机的带宽利用效率有望大大优于传统的光波分复用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The SCM/WDM system model for radio over fiber communication link
Subcarrier Multiplexing (SCM) is multiple radio frequency (RF) carrying signal to transmit through optical fiber using single wavelength. The most significant advantage of SCM in optical communications is its ability to place different optical carriers together closely. On the other hand, Wavelength Division Multiplexing (WDM) is a multiplexer at the transmitter to join the signals together, and a demultiplexer at the receiver to split them apart. In WDM each laser is modulated at a given speed, and the total aggregate capacity being transmitted along the high-bandwidth fiber is the sum total of the bit rates of the individual lasers. In this work, we investigate various issues in this scenario in order to provide a cost-effective, high performance solution for high speed data rates by the available bandwidth of the electrical and optical components. Therefore, SCM must be used in conjunction with WDM to utilize any significant fraction of the fiber bandwidth. The results is present higher bandwidth for long distance communication system (SMF, 150 km) by using SCM/WDM for Radio over Fiber. Therefore, the efficiency of bandwidth utilization of SCM is expected to be much better than conventional optical WDM.
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