用于光通信系统的多相网络OFDM/OQAM

Xi Fang, Yueyang Yu, Li Li, Jifang Jin, Lifeng Wang, Lei Zhang, Xianwei Gao
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引用次数: 0

摘要

正交频分复用偏置正交调幅(OFDM/OQAM)可以消除传统OFDM系统中插入的循环前缀(CP),从而提高频谱效率。对于光学OFDM/OQAM,利用滤波器组保证的实场正交条件可以有效地抑制色散和偏振模色散引起的码间干扰。然而,与传统的OFDM调制相比,滤波器组的构造更为全面。对于这种方法,使用原型滤波器滤波信息符号所带来的复杂性给光学OFDM/OQAM系统的实现带来了限制。本文首次将多相网络OFDM/OQAM引入到光通信系统中。利用PPN OFDM/OQAM,可以分别生成奇数和偶数OFDM/OQAM块。卷积方法可以被PPN OFDM/OQAM符号与原型滤波器的乘法所取代。采用PPN方法,可以显著降低OFDM/OQAM光系统发送端和接收端的计算复杂度。蒙特卡罗仿真结果表明,采用具有良好时频定位(TFL)特性的原型滤波器的PPN OFDM/OQAM为光通信系统提供了良好的传输性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Poly Phase Network OFDM/OQAM for Optical Communication System
Orthogonal frequency division multiplexing offset quadrature amplitude modulation (OFDM/OQAM) could provide high spectral efficiency with the eliminating of cyclic prefixed (CP) inserted in conventional OFDM systems. For optical OFDM/OQAM, real filed orthogonal condition guaranteed by the using of the filter bank could combat the inter symbol interference (ISI) induced by chromatic dispersion (CD) and polarization mode dispersion (PMD). However, the constructing of the filter bank is more comprehensive than conventional OFDM modulation. For this approach, the complexities induced by the filtering of the information symbols with the prototype filter brought constraints to the implementation of the optical OFDM/OQAM systems. In this paper, we introduced poly phase network (PPN) OFDM/OQAM to optical communication systems for the first time. With the using of the PPN OFDM/OQAM, the generating of the odd and the even OFDM/OQAM blocks could be performed separately. The convolution approach could be replaced by the multiplication of the PPN OFDM/OQAM symbols with the prototype filter. With the using of the PPN method, the computational complexities of the transmitter and the receiver for optical OFDM/OQAM system could be decreased significantly. As shown in the Montel Carlo simulation results, PPN OFDM/OQAM employing the prototype filter with promising time-frequency-localization (TFL) property provided promising transmission performance for optical communication systems.
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