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Improvements on the performance of subcarrier multiplexing/wavelength division multiplexing based radio over fiber system

机译:基于光纤系统的子载波多路复用/波分复用性能的提高

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Radio over fiber (RoF) techniques are good candidates to create the backbone of the next generation of wireless networks. Many parameters affect RoF communications such as amplified spontaneous emission noise (ASE), four-wave mixing nonlinearity (FWM), the modulation, channel spacing, switching voltage, and phase shifter. In this paper, we propose an improved model of RoF communication systems using subcarrier multiplexing/wavelength division multiplexing (SCM/WDM) technique with unequal channel spacing and 1-km Erbium-doped fiber amplifier (EDFA). Simulation results confirmed that we could obtain the lowest bit error rate and noises when the EDFA is placed at 1 km from the transmitter by using optical single-sideband (OSSB) modulation at frequencies 193.1 THz, 193.2 THz, 193.35 THz, and 193.6 THz.
机译:无线电(ROF)技术是创建下一代无线网络的骨干的良好候选者。 许多参数影响ROF通信,例如放大的自发发射噪声(ASE),四波混合非线性(FWM),调制,通道间隔,切换电压和移相器。 在本文中,我们提出了一种利用子载波多路复用/波分复用(SCM / WDM)技术的ROF通信系统的改进模型,具有不相等的通道间距和1 km erbium掺杂的光纤放大器(EDFA)。 仿真结果证实,我们可以通过使用频率的光学单边带(OSSB)调制在距离变送器1公里,193.1THz,193.35THz,193.35六星级和193.6六六六,当时,当EDFA放置在距离变送器1公里时,我们可以获得最低的误码率和噪声。

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