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首页> 外文期刊>Journal of Lightwave Technology >Matrix algorithms for dynamic gain-spectrum adjustment of backward-pumped distributed fiber Raman amplifier
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Matrix algorithms for dynamic gain-spectrum adjustment of backward-pumped distributed fiber Raman amplifier

机译:反向泵浦分布式光纤拉曼放大器动态增益频谱调整的矩阵算法

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摘要

Two matrix algorithms aiming at a dynamic gain-spectrum adjustment in a backward-pumped distributed fiber Raman amplifier (B-DFRA) are developed based on the relation between changes in the pump power and the gain spectrum. Characteristic channels are chosen to reduce the dimension of matrices in the algorithm, which can be implemented by built-in microprocessors or DSP chips inside the B-DFRA module. Furthermore, as shown by the theoretical analysis and the numerical simulation, elements in the matrices can be directly and easily measured in deployed fiber plants without information on fiber parameters. These matrix algorithms are capable of adjusting the gain spectrum to fit the arbitrary profile desired in reality, while a wide dynamic range can be achieved by a multistage adjustment using matrices measured under several gain levels.
机译:基于泵浦功率变化与增益谱之间的关系,开发了两种用于动态调整后向分布式光纤拉曼放大器(B-DFRA)中的增益频谱的矩阵算法。选择特征通道以减小算法中的矩阵尺寸,可以通过B-DFRA模块内部的内置微处理器或DSP芯片来实现。此外,如理论分析和数值模拟所示,在部署的纤维工厂中,无需有关纤维参数的信息,即可直接轻松地测量矩阵中的元素。这些矩阵算法能够调整增益谱以适应现实中所需的任意轮廓,而通过使用在几个增益水平下测量的矩阵进行多级调整,可以实现宽动态范围。

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