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首页> 外文期刊>Journal of Lightwave Technology >Analysis of the Time-Frequency Localization Property of the Filter Banks for Optical OFDM/OQAM Systems
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Analysis of the Time-Frequency Localization Property of the Filter Banks for Optical OFDM/OQAM Systems

机译:光学OFDM / OQAM系统滤波器组的时频本地化特性分析

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Orthogonal frequency-division multiplexing offset-quadrature amplitude modulation (OFDMOQAM) relaxes the orthogonal condition from the complex domain to the real field. Therefore, the cyclic prefix (CP) inserted between consecutive optical OFDM blocks, for combating the inter-symbol interference (ISI) induced by chromatic dispersion (CD) and polarization-mode-dispersion (PMD), could be removed for optical OFDMOQAM to promote the system spectral efficiency. The ISI and the inter-carrier-interference (ICI) could be combated by using the filter banks with good time-frequency localization (TFL) property. Thus, the accuracy of channel estimation and system transmission performance largely depend on the TFL property of the filter banks for optical OFDMOQAM. Recently, numerical experimental demonstrations and theoretical discussions of optical OFDMOQAM have been reported. However, to our best knowledge, discussions on the TFL property of the filter banks have not been studied for optical OFDMOQAM to date. In this paper, we systematically analyze the TFL property of the filter banks for optical OFDMOQAM for the first time. We evaluate the TFL property of the filter banks with energy concentration, orthogonal basis, and isotropic property. Three typical filters as the Gaussian filter, the extended Gaussian function (EGF) filter and the isotropic orthogonal transfer algorithm (IOTA) filter have been employed for comparison. According to our theoretical analysis, with the use of the IOTA filter, optical impairments and channel estimation complexities could be decreased evidently thanks to the promising isotropic property. As shown in the numerous Montel Carlo simulations of the coherent optical OFDMOQAM, system robustness against IMI, phase noise induced interference (PNII) and nonlinear effect could be improved evidently with the use of the IOTA filter.
机译:正交频分复用失调正交幅度调制(OFDMOQAM)放宽了从复数域到实场的正交条件。因此,为了消除由色散(CD)和偏振模色散(PMD)引起的符号间干扰(ISI),可以删除插入在连续的OFDM光学块之间的循环前缀(CP),以实现OFDMOQAM的推广。系统频谱效率。可以通过使用具有良好时频定位(TFL)特性的滤波器组来消除ISI和载波间干扰(ICI)。因此,信道估计的准确性和系统传输性能在很大程度上取决于用于光学OFDMOQAM的滤波器组的TFL特性。近来,已经报道了光学OFDMOQAM的数值实验演示和理论讨论。然而,据我们所知,迄今为止,尚未对光学OFDMOQAM研究有关滤波器组的TFL特性的讨论。在本文中,我们首次系统地分析了光学OFDMOQAM滤波器组的TFL特性。我们用能量集中度,正交基和各向同性来评估滤光片组的TFL特性。比较了三种典型的滤波器,即高斯滤波器,扩展高斯函数(EGF)滤波器和各向同性正交传输算法(IOTA)滤波器。根据我们的理论分析,由于有希望的各向同性特性,使用IOTA滤波器,可以显着降低光学损伤和信道估计复杂度。如相干光OFDMOQAM的大量Montel Carlo仿真所示,使用IOTA滤波器可以明显提高系统对IMI的鲁棒性,相位噪声引起的干扰(PNII)和非线性效应。

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