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实时光正交频分复用无源光网络(PON)系统的光功率预算有显著改善。

Significant improvements in optical power budgets of real-time optical OFDM PON systems.

作者信息

Wei J L, Sánchez C, Giddings R P, Hugues-Salas E, Tang J M

机构信息

School of Electronic Engineering, Bangor University, Dean street, Bangor, LL57 1UT, U. K.

出版信息

Opt Express. 2010 Sep 27;18(20):20732-45. doi: 10.1364/OE.18.020732.

Abstract

Based on a comprehensive theoretical optical orthogonal frequency division multiplexing (OOFDM) system model rigorously verified by comparing numerical results with end-to-end real-time experimental measurements at 11.25Gb/s, detailed explorations are undertaken, for the first time, of the impacts of various physical factors on the OOFDM system performance over directly modulated DFB laser (DML)-based, intensity modulation and direct detection (IMDD), single-mode fibre (SMF) systems without in-line optical amplification and chromatic dispersion compensation. It is shown that the low extinction ratio (ER) of the DML modulated OOFDM signal is the predominant factor limiting the maximum achievable optical power budget, and the subcarrier intermixing effect associated with square-law photon detection in the receiver reduces the optical power budget by at least 1dB. Results also indicate that, immediately after the DML in the transmitter, the insertion of a 0.02nm bandwidth optical Gaussian bandpass filter with a 0.01nm wavelength offset with respect to the optical carrier wavelength can enhance the OOFDM signal ER by approximately 1.24dB, thus resulting in a 7dB optical power budget improvement at a total channel BER of 1 × 10(-3).

摘要

基于一个经过严格验证的综合理论光正交频分复用(OOFDM)系统模型,该模型通过将数值结果与11.25Gb/s的端到端实时实验测量结果进行比较得到验证,首次详细探讨了各种物理因素对基于直接调制分布反馈激光器(DML)、强度调制和直接检测(IMDD)、无在线光放大和色散补偿的单模光纤(SMF)系统中OOFDM系统性能的影响。结果表明,DML调制的OOFDM信号的低消光比(ER)是限制最大可实现光功率预算的主要因素,并且与接收器中的平方律光子检测相关的子载波混叠效应使光功率预算至少降低1dB。结果还表明,在发射机中的DML之后,立即插入一个带宽为0.02nm、相对于光载波波长有0.01nm波长偏移的光学高斯带通滤波器,可以将OOFDM信号的ER提高约1.24dB,从而在总信道误码率为1×10^(-3)时使光功率预算提高7dB。

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