首页> 外文会议>Conference on photonics north >Design of Experiment Optimization of Erbium-Doped Fiber to Single Mode Fiber Splices
【24h】

Design of Experiment Optimization of Erbium-Doped Fiber to Single Mode Fiber Splices

机译:掺铒光纤对单模光纤剪接的实验优化设计

获取原文

摘要

Optimizing splicing of Erbium Doped Fiber (EDF) to Single Mode Fiber (SMF) is a critical requirement to maximize the efficiency of Erbium Doped Fiber Amplifiers (EDFAs). This paper describes the key parameters which affect the splice loss of EDF-SMF splices as well as the optimization process used to achieve 50% splice loss improvement. Before performing the optimization process, the measurement system was validated with an evaluation including: laser stability, detector linearity and Gage R&R (Repeatability & Reproducibility). The optimization of EDF and SMF splicing was performed using a design of experiment with 2~k factorial design and using MiniTab software for data analysis. A commercially available fusion splicer was used. There were 53 parameters available for setting, They were selected and divided into two groups. The first group included the parameters which might affect the splice loss and the second group included the parameters which might affect the estimated splice loss. The optimization process for the first group of parameters was performed until the target loss was met. The Arcl Power and Arcl Time were identified as the most critical parameters for loss. Then the optimization process for the second group of parameters was performed until the slope of the graph of estimated splice loss to actual splice loss was nearly one. This method reduced the average actual splice loss from factory setting of EDF-SMF splicing (0.18 dB) to 0.10 dB and SMF-EDF splicing to 0.09dB. The difference between estimated loss and actual loss was less than 0.05dB for either direction (measurements in the EDF-SMF and SMF-EDF direction). The proposed design of experiment can be used as a reference process to perform the optimization of EDF to SMF splicing when Erbium Doped Fiber is changed to the other fiber types.
机译:优化铒掺杂光纤(EDF)拼接到单模光纤(SMF)是最大限度地提高铒掺杂光纤放大器(EDFA)效率的关键要求。本文介绍了影响EDF-SMF接头的接头损耗的关键参数,以及用于实现50%拼接损耗改进的优化过程。在执行优化过程之前,测量系统被验证,评估包括:激光稳定性,检测器线性和量度和GAGE R&R(重复性和再现性)。使用实验设计和使用Minitab软件进行数据分析进行EDF和SMF拼接的优化。使用市售的熔接器。有53个参数可用于设置,它们被选中并分为两组。第一组包括可能影响拼接损耗的参数,第二组包括可能影响估计拼接损耗的参数。执行第一组参数的优化过程,直到满足目标损耗。 ARCL功率和ARCL时间被确定为损失最关键的参数。然后执行第二组参数的优化过程,直到估计的接头损耗图的斜率几乎是一个。该方法从EDF-SMF拼接(0.18 dB)的出厂设置到0.10 dB和SMF-EDF拼接到0.09dB的平均实际接头损耗降低到0.09dB。对于任一方面(EDF-SMF和SMF-EDF方向的测量),估计损耗和实际损耗之间的差异小于0.05dB。所提出的实验设计可以用作参考过程,以当掺铒光纤改变到其他纤维类型时,可以将EDF的优化进行了优化至SMF拼接。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号