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首页> 外文期刊>Computer applications in engineering education >Proposing simulation model for multi-wavelength source offering 40 Gbps WDM-PON using AWG with a single laser
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Proposing simulation model for multi-wavelength source offering 40 Gbps WDM-PON using AWG with a single laser

机译:提出用于使用AWG和单个激光器的40 Gbps WDM-PON的多波长光源的仿真模型

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摘要

In this paper, A new simulation model is proposed and implemented for cost effective optical line terminal (OLT) arrangements for wavelength division multiplexed passive optical network (WDM-PON). The conventional setup at OLT side is replaced with a new arrangement containing single laser source in cascade with phase modulator and arrayed waveguide grating (AWG), whereas the phase modulator is tailored with one RF source. The phase modulator generates multicarrier signal and AWG splits the signal into multiple single wavelengths based on its routing configurations. AWG is actually used as a passing band periodical filter that routs the input wavelengths to four different wavelengths depending on its free spectral range, the frequency spacing between the generated wavelengths is 20 GHz. Across each routed wavelength, differential phase shift keying is used in downlink transmission for 10 Gbps, while intensity modulation is employed in the uplink transmission based on off-keying. 40 Gbps full duplex transmission via 20 km fiber span is successfully achieved with minimum power loss and effective results. At ONU side, optical splitters divides the signal into two, half power of the signal is used in demodulation at ONU while half of the power is utilized for the uplink transmission, this way colorless transmission is achieved. Transmission performances are examined with negligible power penalties, better Q-factors, and handsome eye openings, which confirm the deployment of proposed arrangement in the next generation access network. The proposed model is successfully implemented in the simulation environment provided by OptiSystem.
机译:本文针对波分复用无源光网络(WDM-PON)的具有成本效益的光线路终端(OLT)布置,提出并实现了一种新的仿真模型。 OLT端的常规设置被一种新的布置所取代,该布置包含单个激光源,级联的相位调制器和阵列波导光栅(AWG),而相位调制器则定制了一个RF源。相位调制器生成多载波信号,AWG根据其路由配置将信号分成多个单波长。 AWG实际上用作通带定期滤波器,根据其自由光谱范围将输入波长分为四个不同的波长,生成的波长之间的频率间隔为20 GHz。跨每个路由波长,差分相移键控用于10 Gbps的下行链路传输中,而强度调制则基于非键控在上行链路传输中使用。通过20 km的光纤跨距成功实现了40 Gbps全双工传输,并且功耗降到最低,并且获得了有效的结果。在ONU侧,光分路器将信号分为两部分,信号的一半功率用于ONU的解调,而一半功率用于上行链路传输,从而实现了无色传输。传输性能的检验可以忽略不计的功率损失,更好的Q因子和漂亮的眼图张开度,这些都证实了所建议的方案在下一代接入网中的部署。所提出的模型已在OptiSystem提供的仿真环境中成功实现。

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