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Experimental demonstration of wavelength-division-multiplexing passive optical network employing probabilistic shaping 4-level pulse amplitude modulation

机译:概率整形四电平脉冲幅度调制的波分复用无源光网络的实验演示

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摘要

A 5 × 25-Gbaud wavelength-division-multiplexing passive optical network (WDM-PON) employing probabilistic shaping 4-level pulse amplitude modulation (PS-PAM4) with direct detection is proposed and experimentally demonstrated. Each optical carrier at the optical line terminal (OLT) carries a 25-Gbaud PS-PAM4 signal based on Maxwell-Boltzmann distribution. By employing PS-PAM4, the receiver power sensitivity (RPS) and fiber nonlinear effect tolerance of the system can be significantly improved and enhanced compared with the unshaped one, which can provide abundant system loss budget for the legacy optical distribution networks. The experimental results show that, compared with the WDM-PON employing uniform PAM4, the superior RPS of 1.44 dB and the fiber nonlinear effect tolerance improvement of 3.07 dB over 20-km standard single-mode fiber transmission are obtained for the proposed system. In addition, the system performance by introducing a blind adaptive pre-equalization based on the joint applications of constant modulus algorithm and decision-directed least-mean-square error algorithm, which can accurately compensate for the signal high-frequency loss caused by the electro-optical components, such as digital-to-analog converter, optical modulators, and electrical drivers at the OLT, is also experimentally investigated. © 2019 Society of Photo-Optical Instrumentation Engineers (SPIE) [DOI:10.1117/1.OE.58.9.096111]
机译:提出了一种5×25 Gbaud波分复用无源光网络(WDM-PON),该网络采用概率整形4级脉冲幅度调制(PS-PAM4)直接检测。基于Maxwell-Boltzmann分布,光线路终端(OLT)上的每个光载波都承载25 Gbaud PS-PAM4信号。通过使用PS-PAM4,与未整形的系统相比,可以显着改善和增强系统的接收机功率灵敏度(RPS)和光纤非线性效应容限,这可以为传统的光分配网络提供充足的系统损耗预算。实验结果表明,与20 km标准单模光纤传输相比,与采用均质PAM4的WDM-PON相比,具有1.44 dB的出色RPS和3.07 dB的光纤非线性效应容忍度提高。另外,通过引入基于恒模算法和决策定向最小均方误差算法的联合应用的盲自适应预均衡技术,可以准确补偿电信号引起的信号高频损耗,从而提高系统性能。还在光学上研究了诸如OLT上的数模转换器,光学调制器和电驱动器之类的光学组件。 ©2019光电仪器工程师协会(SPIE)[DOI:10.1117 / 1.OE.58.9.096111]

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