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Spectral Shape Impact of Nonlinear Compensator Signal in LTE RoF System

机译:LTE RoF系统中非线性补偿信号的频谱形状影响

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摘要

In this letter, a large scale investigation is carried out, utilizing several spectral shapes as the source for direct modulation-based frequency dithering (DMFD). DMFD mitigates the nonlinear effect of long-term evolution radio-over-fiber systems. The dithering signal shapes are sine, square, saw, sinc, and Gaussian with different spectral width characteristics. We show that by varying the dithering signal with increasing spectral width, no additional distortion is introduced in the linear and optimum optical launch power regions, which are dominated by the frequency chirp and chromatic dispersion. In addition, it is revealed herein that introducing dithering signals with varying spectral widths does not change the nonlinear compensator characteristic toward suppression of nonlinearity. The reason for this is that as long as the optical source linewidth is larger than stimulated Brillouin scattering (SBS) linewidth, the proposed method completely suppresses SBS. Finally, the degree of freedom for the dithering signal is infinite, with an optical power budget improvement of up to 8 dB at an optical launch power of 10 dBm, which can in turn be used towards connecting multiple relay nodes.
机译:在这封信中,利用几种频谱形状作为直接基于调制的频率抖动(DMFD)的来源,进行了大规模研究。 DMFD减轻了长期演进光纤系统的非线性影响。抖动信号的形状为正弦波,方波,锯齿波,正弦波和高斯波,具有不同的频谱宽度特征。我们表明,通过随着频谱宽度的增加而改变抖动信号,不会在线性和最佳光发射功率区域中引入额外的失真,而线性和最佳光发射功率区域主要受频率rp和色散的影响。另外,在此揭示出,引入具有变化的频谱宽度的抖动信号不会将非线性补偿器特性改变为抑制非线性。其原因是,只要光源线宽大于受激布里渊散射(SBS)线宽,该方法就可以完全抑制SBS。最后,抖动信号的自由度是无限的,在10 dBm的光发射功率下,光功率预算最多可提高8 dB,这又可以用于连接多个中继节点。

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