Optical filtering optimization for NRZ coding format in RSOA-based DWDM PON

Z. Vujicic, N. Pavlovic, A. Teixeira
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引用次数: 3

Abstract

A dynamic, wideband model for simulation of spatial-temporal distribution of photons and carriers in a bulk InP-InGaAsP reflective semiconductor optical amplifier (RSOA) is presented. Saturation and noise characteristics are successfully predicted and in good accordance with theoretical predictions found in literature. Based on RSOA model and a model for access network link, numerical optimization of multiplexing (MUX) and demultiplexing (DMUX) 3-dB filter bandwidths when transmitting non-return-to-zero (NRZ) format is preformed. The access network simulated scenario is based on high density (<; 25 GHz channel spacing) arrayed waveguide grating (AWG) and remodulation of 10 Gbit/s NRZ signal by using RSOA.
基于rsoa的DWDM PON中NRZ编码格式的光滤波优化
提出了一种用于模拟块体InP-InGaAsP反射半导体光放大器(RSOA)中光子和载流子时空分布的动态宽带模型。饱和度和噪声特性被成功地预测,并与文献中发现的理论预测相一致。基于RSOA模型和接入网链路模型,对传输非归零(NRZ)格式时的复用(MUX)和解复用(DMUX) 3db滤波器带宽进行了数值优化。接入网模拟场景基于高密度(<;25ghz通道间距)阵列波导光栅(AWG)和采用RSOA调制10gbit /s NRZ信号。
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