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Average inversion level, modeling, and physics of erbium-doped fiber amplifiers

机译:掺fiber光纤放大器的平均反转水平,建模和物理性质

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摘要

We present a detailed study of a set of models for characterizing the gain, the input and output powers of single erbium-doped fiber amplifiers (EDFAs) and networks of EDFAs. The time dependent gain is described by a single ordinary differential equation for the average inversion level of an EDFA with arbitrary number of signal channels with arbitrary power levels and propagation directions. In steady state, this ordinary differential equation becomes a transcendental equation from which many important parameters are derived. Through perturbation analysis of the time dependent model, the output perturbation can be expressed explicitly in terms of the input perturbations, which is useful for tone calculations. Therefore, this set of models can be applied to the steady state, and to large- and small-signal transient states in wavelength-division multiplexed (WDM) optical communication networks with EDFAs. The models are applied to analyze fast power transients in networks of EDFAs.
机译:我们对一组模型进行了详细的研究,这些模型用于表征单个掺-光纤放大器(EDFA)的增益,输入和输出功率以及EDFA网络。时间依赖性增益由单个常微分方程描述,该方程用于具有任意数量的信号通道,具有任意功率水平和传播方向的EDFA的平均反转水平。在稳态下,该常微分方程成为超越方程,从中可以导出许多重要参数。通过对时间相关模型的扰动分析,可以根据输入扰动明确表示输出扰动,这对于音调计算很有用。因此,这套模型可以应用于具有EDFA的波分复用(WDM)光通信网络中的稳态以及大信号和小信号瞬态。该模型可用于分析EDFA网络中的快速功率瞬变。

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