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How to Increase the Achievable Information Rate by Per-Channel Dispersion Compensation

机译:如何通过每个通道的色散补偿来提高可获得的信息速率

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Deploying periodic inline chromatic dispersion compensation enables reducing the complexity of the digital back propagation (DBP) algorithm. However, compared with nondispersion-managed (NDM) links, dispersion-managed (DM) ones suffer a stronger cross-phase modulation (XPM). Utilizing per-channel dispersion-managed (CDM) links (e.g., using fiber Bragg grating) allows for a complexity reduction of DBP, while abating XPM compared to DM links. In this paper, we show for the first time that CDM links enable also a more effective XPM compensation compared to NDM ones, allowing a higher achievable information rate (AIR). This is explained by resorting to the frequency-resolved logarithmic perturbation model and showing that per-channel dispersion compensation increases the frequency correlation of the distortions induced by XPM over the channel bandwidth, making them more similar to a conventional phase noise. We compare the performance (in terms of the AIR) of a DM, an NDM, and a CDM link, considering two types of mismatched receivers: one neglects the XPM phase distortion and the other compensates for it. With the former, the CDM link is inferior to the NDM one due to an increased in-band signal-noise interaction. However, with the latter, a higher AIR is obtained with the CDM link than with the NDM one owing to a higher XPM frequency correlation. The DM link has the lowest AIR for both receivers because of a stronger XPM.
机译:部署周期性的在线色散补偿可以降低数字反向传播(DBP)算法的复杂性。但是,与非分散管理(NDM)链路相比,分散管理(DM)的链路具有更强的交叉相位调制(XPM)。利用每通道色散管理(CDM)链路(例如,使用光纤布拉格光栅)可以降低DBP的复杂度,同时与DM链路相比可以减轻XPM的负担。在本文中,我们首次展示与NDM相比,CDM链路还可以实现更有效的XPM补偿,从而可以实现更高的信息速率(AIR)。通过诉诸于频率解析对数扰动模型来解释这一点,并表明每通道色散补偿会增加XPM在通道带宽上引起的失真的频率相关性,从而使其更类似于常规相位噪声。考虑到两种不匹配的接收器,我们比较了DM,NDM和CDM链路的性能(以AIR表示):一种忽略XPM相位失真,另一种补偿它。对于前者,由于带内信号噪声交互作用增加,因此CDM链接不如NDM链接。然而,由于后者,由于较高的XPM频率相关性,因此CDM链路比NDM可获得更高的AIR。由于XPM更强大,因此DM链路的两个接收器的AIR最低。

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