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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Optimization of band-pass filtering parameters of a Raman lidar detecting atmospheric water vapor
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Optimization of band-pass filtering parameters of a Raman lidar detecting atmospheric water vapor

机译:拉曼激光雷达探测大气水汽的带通滤波参数优化

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摘要

It is very important for daytime Raman lidar measurement of water vapor to determine the parameters of a band-pass filter, which are pertinent to the lidar signal to noise ratio (SNR). The simulated annealing (SA) algorithm method has an advantage in finding the extremum of a certain cost function. In this paper, the Raman spectrum of water vapor is simulated and then a first realization of a simulated annealing algorithm in the optimization of a band-pass filter of a Raman lidar system designed to detect daytime water vapor is presented. The simulated results indicate that the narrow band-pass filter has higher SNR than the wide filter does but there would be an increase in the temperature sensitivity of a narrowband Raman water vapor lidar in the upper troposphere. The numerical simulation indicates that the magnitude of the temperature dependent effect can reach 3.5% or more for narrow band-pass Raman water vapor measurements so it is necessary to consider a new water vapor Raman lidar equation that permits the temperature sensitivity of these equations to be confined to a single term.
机译:对于白天水蒸气的拉曼激光雷达测量,确定与激光雷达信噪比(SNR)相关的带通滤波器参数非常重要。模拟退火(SA)算法方法在找到某个成本函数的极值方面具有优势。本文对水蒸气的拉曼光谱进行了仿真,然后提出了一种模拟退火算法的首次实现,该算法在优化设计用于检测白天水蒸气的拉曼激光雷达系统的带通滤波器中得到了首次实现。仿真结果表明,窄带通滤波器的信噪比比宽滤波器高,但对流层上空的窄带拉曼水蒸气激光雷达的温度灵敏度会增加。数值模拟表明,对于窄带通拉曼水蒸气测量,温度相关效应的幅度可以达到3.5%或更高,因此有必要考虑一个新的水蒸气拉曼激光雷达方程,以允许这些方程的温度敏感性为仅限于一个术语。

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