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掺铒光纤放大器增益数值模拟数据集

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吸收和发射截面光谱以及LP01模强度分布和铒离子掺杂密度函数之间的重叠积分数据由MATLAB仿真得到,波长范围为1440-1640 nm。 不同EDF长度下EDFA的模拟增益谱数据由MATLAB仿真得到。模拟时的输入信号功率为-30 dBm,前向泵浦功率为100 mW,掺铒光纤长度分别为5, 10, 15, 20, 25和30 m,波长范围为1510-1610 nm。 不同信号功率下EDFA的增益谱数据由MATLAB仿真得到。模拟时的掺铒光纤长度为10 m,前向泵浦功率为100 mW,输入信号功率分别为-30, -20, -10和0 dBm,波长范围为1510到1610 nm。 使用10 m掺铒光纤时不同泵浦功率下EDFA的增益谱数据由MATLAB仿真得到。模拟时的掺铒光纤长度为10 m,输入信号功率为-30 dBm,前向泵浦功率分别为30, 60, 90, 120和150 mW,波长范围为1510-1610 nm。 使用30 m掺铒光纤时不同泵浦功率下EDFA的增益谱数据由MATLAB仿真得到。模拟时的掺铒光纤长度为30 m,输入信号功率为-30 dBm,前向泵浦功率分别为100, 200, 300和400 mW,波长范围为1545-1605 nm。 不同泵浦方式下EDFA的增益谱数据由MATLAB仿真得到。模拟时的掺铒光纤长度为10 m,输入信号功率为-30 dBm,泵浦功率分别为前向100 mW、后向100 mW以及双向各50 mW,波长范围为1510-1590 nm。 掺铒光纤长度10 m,输入信号功率-30 dBm,泵浦功率前向100 mW时EDFA的增益谱数据由MATLAB仿真得到。模拟时的掺铒光纤长度为10 m,输入信号功率为-30 dBm,泵浦功率为前向100 mW,波长范围为1510-1590 nm。

The data of absorption and emission cross-section spectra, as well as the overlap integrals between the LP01 mode intensity distribution and the erbium ion doping density function, were obtained via MATLAB simulations, with the wavelength range of 1440–1640 nm. Simulated gain spectrum data of EDFAs under different erbium-doped fiber (EDF) lengths were obtained via MATLAB simulations. During the simulations, the input signal power was -30 dBm, the forward pumping power was 100 mW, the EDF lengths were 5, 10, 15, 20, 25 and 30 m respectively, and the wavelength range was 1510–1610 nm. Gain spectrum data of EDFAs under different signal powers were obtained via MATLAB simulations. During the simulations, the EDF length was 10 m, the forward pumping power was 100 mW, the input signal powers were -30, -20, -10 and 0 dBm respectively, and the wavelength range was 1510 to 1610 nm. Gain spectrum data of EDFAs under different pumping powers when using 10 m EDF were obtained via MATLAB simulations. During the simulations, the EDF length was 10 m, the input signal power was -30 dBm, the forward pumping powers were 30, 60, 90, 120 and 150 mW respectively, and the wavelength range was 1510–1610 nm. Gain spectrum data of EDFAs under different pumping powers when using 30 m EDF were obtained via MATLAB simulations. During the simulations, the EDF length was 30 m, the input signal power was -30 dBm, the forward pumping powers were 100, 200, 300 and 400 mW respectively, and the wavelength range was 1545–1605 nm. Gain spectrum data of EDFAs under different pumping configurations were obtained via MATLAB simulations. During the simulations, the EDF length was 10 m, the input signal power was -30 dBm, the pumping powers were 100 mW forward, 100 mW backward, and 50 mW per direction for bidirectional pumping respectively, and the wavelength range was 1510–1590 nm. Gain spectrum data of EDFAs with 10 m EDF length, -30 dBm input signal power and 100 mW forward pumping power were obtained via MATLAB simulations. During the simulations, the EDF length was 10 m, the input signal power was -30 dBm, the forward pumping power was 100 mW, and the wavelength range was 1510–1590 nm.

提供机构:
广东工业大学
搜集汇总
数据集介绍
掺铒光纤放大器增益数值模拟数据集 数据集图片
背景与挑战
背景概述
该数据集通过MATLAB仿真,提供了掺铒光纤放大器(EDFA)的增益数值模拟数据,包括吸收和发射截面光谱、重叠积分以及在不同光纤长度、信号功率和泵浦条件下的增益谱。数据覆盖波长范围1440-1640 nm和1510-1610 nm,旨在支持光纤通信技术的研究与应用。
以上内容由遇见数据集搜集并总结生成
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