论文标题

纤维长源概况估计方法的性能极限

Performance Limit of Fiber-Longitudinal Power Profile Estimation Methods

论文作者

Sasai, Takeo, Yamazaki, Etsushi, Kisaka, Yoshiaki

论文摘要

本文介绍了纵向功率概况估计(PPE)方法的分析结果,该方法可视化相干接收器的光纤中信号功率演变。 PPE可以作为非线性schrödinger方程的逆问题配方,其中非线性系数(以及信号功率)是从边界条件(即传输和接收信号)重建的。审查和分析了两种类型的PPE方法,包括基于相关的方法(CMS)和基于最小平方英尺的方法(MMSE)。提供了其输出功率概况和空间分辨率的分析表达式,因此阐明了两种PPE方法的理论性能限制及其差异。派生的方程式表明,CMS的估计功率轮廓可以理解为真实功率曲线和平滑函数的卷积。因此,即使在无嘈杂和无失真的条件下,CM的空间分辨率和测量精度也受到限制。 CMS空间分辨率的封闭式公式与色散系数和信号带宽平方的乘积成反比。使用MMSE,这种卷积效应被取消,并且估计的功率配置文件接近了在良好的空间步长下的真实功率轮廓。

This paper presents analytical results on longitudinal power profile estimation (PPE) methods, which visualize signal power evolution in optical fibers at a coherent receiver. The PPE can be formulated as an inverse problem of the nonlinear Schrödinger equation, where the nonlinear coefficient (and thus signal power) is reconstructed from boundary conditions, i.e., transmitted and received signals. Two types of PPE methods are reviewed and analyzed, including correlation-based methods (CMs) and minimum-mean-square-error-based methods (MMSEs). The analytical expressions for their output power profiles and spatial resolution are provided, and thus the theoretical performance limits of the two PPE methods and their differences are clarified. The derived equations indicate that the estimated power profiles of CMs can be understood as the convolution of a true power profile and a smoothing function. Consequently, the spatial resolution and measurement accuracy of CMs are limited, even under noiseless and distortionless conditions. Closed-form formulas for the spatial resolution of CMs are shown to be inversely proportional to the product of a chromatic dispersion coefficient and the square of signal bandwidth. With MMSEs, such a convolution effect is canceled out and the estimated power profiles approach a true power profile under a fine spatial step size.

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