设计了双通道红外激光雷达系统的收发部分

S. A. Sadovnikov, S. V. Yakovlev, N. S. Kravtsova, M. P. Gerasimova
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引用次数: 0

摘要

该研究旨在确定双通道近红外激光雷达系统元件的最佳参数。为了解决远程大气气体分析问题,在设计和开发li-dar系统的第一个阶段是计算重叠函数。作为研究的一部分,对激光雷达系统在不同收发路径配置下的重叠功能进行了数值模拟。仿真结果表明,在激光雷达接收部分使用指定参数的梅森望远镜时,最好将激光辐射聚焦在距离发射路径一定距离的地方,这样既可以使望远镜视场与激光束完全重合,又可以最大限度地减少激光雷达工作的“死区”。所得结果将进一步应用于测量大气中温室气体浓度的双通道激光雷达系统的设计开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing the transceiver part of a two-channel infrared lidar system
The study is aimed at determining the optimal parameters of the elements of a two-channel near-IR lidar system. One of the first stages in the design and development of li-dar systems that solve the problems of remote gas analysis of the atmosphere is the calculation of the overlap function. As part of the study, numerical simulation of the overlapping function of the lidar system was carried out for various configurations of the transceiver path. The simulation results showed that when using a Mersenne telescope with specified parameters in the receiving part of the lidar, it is preferable to focus the laser radiation at a distance from the transmitting path in order to obtain a complete overlap of the field of view of the telescope and the laser beam while minimizing the "dead" zone of the lidar operation. The results obtained will be further applied in the development of the design of a two-channel lidar system for measuring the concentrations of greenhouse gases in the atmosphere.
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