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A Novel Bi-wavelength Method for Accurately Measuring Gain and Noise Characteristics of an Erbium-Doped Fibre Amplifier for Multi-Channel Wavelength Division Multiplexing Transmission

机译:精确测量掺Multi光纤放大器多通道波分复用传输增益和噪声特性的双波长新方法

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摘要

Gain and noise figure (NF) are the most important two parameters of an erbium-doped fibre amplifier (EDFA) for a multi-channel wavelength division multiplexing (WDM) transmission system. A simple bi-wavelength method for accurate gain and NF spectrum measurement of EDFA for WDM applications is proposed. A saturating input signal, whose power equals to the sum of all the WDM signal power and whose wavelength is determined by the channel numbers and the wavelength of the WDM input signals, saturates the EDFA in a degree as the same as the WDM signals input. Meanwhile, a small power probe signal scans and measures the gain and the NF value at every wavelength of the WDM input signals. Investigative results by numerical simulation show that the gain and the NF spectra measured by this method have good agreement with the real spectra of the WDM signal input in a large total input power range. The maximum errors of the gain and the NF are less than 0.2 dB and 0.16 dB, respectively, for a 50-channel input case. The method is competent for the accurate gain and the NF spectrum measurement of the fibre preamplifier and the line-amplifier for WDM applications and has the advantages of simplicity, convenience and easy implement.
机译:增益和噪声系数(NF)是用于多通道波分复用(WDM)传输系统的掺do光纤放大器(EDFA)最重要的两个参数。提出了一种简单的双波长方法,用于WDM应用中的EDFA的准确增益和NF光谱测量。饱和输入信号的功率等于所有WDM信号功率的总和,并且其波长由通道号和WDM输入信号的波长确定,它使EDFA饱和的程度与输入WDM信号的程度相同。同时,一个小的功率探测信号扫描并测量WDM输入信号每个波长的增益和NF值。数值模拟的研究结果表明,在较大的总输入功率范围内,该方法测得的增益和NF谱图与WDM信号输入的真实谱图具有良好的一致性。对于50通道输入情况,增益和NF的最大误差分别小于0.2 dB和0.16 dB。该方法能够胜任用于WDM应用的光纤前置放大器和线路放大器的准确增益和NF频谱测量,并且具有简单,方便和易于实施的优点。

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