Xu Dan, Huang Jun Bin, Wu Jun, Gu Hong Can, Liu Wen
Appl Opt. 2022 May 1;61(13):3589-3597. doi: 10.1364/AO.451936.
To reduce the output power ununiformity mainly caused by the exponential attenuation of pump power in a distributed feedback fiber laser (DFB FL) sensor array, a power equalization method based on array structure optimization is proposed. By analyzing the influencing factors of the output power flatness of the array, an output power prediction model of a DFB FL wavelength division multiplexing (WDM) array is established, and the standard deviation coefficient of the output power is proposed as the main evaluating indicator for assessing the output power flatness. An array structure optimization scheme based on the simulated annealing algorithm is designed, and the optimized array structure of the 64-element DFB FL sensor array is achieved. The results show that the power fluctuation of the optimized array is significantly reduced from universal 5-10 dB to smaller than 2.6 dB, while the performance of the DFB FL sensor array is improved with better noise floor and increased multiplexing capacity, as well as improved array design efficiency.
为降低分布式反馈光纤激光器(DFB FL)传感器阵列中泵浦功率指数衰减导致的输出功率不均匀性,提出一种基于阵列结构优化的功率均衡方法。通过分析阵列输出功率平坦度的影响因素,建立了DFB FL波分复用(WDM)阵列的输出功率预测模型,并提出输出功率的标准差系数作为评估输出功率平坦度的主要评价指标。设计了基于模拟退火算法的阵列结构优化方案,实现了64元DFB FL传感器阵列的优化阵列结构。结果表明,优化后阵列的功率波动从普遍的5-10 dB显著降低至小于2.6 dB,同时DFB FL传感器阵列的性能得到改善,具有更好的本底噪声、更大的复用容量以及更高的阵列设计效率。