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Research on the space-borne coherent wind lidar technique and the proto-type experiment

机译:太空型相干风潮技术与原型实验研究

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Space-borne coherent wind lidar technique is considered as one of the most promising and appropriate remote Sensing methods for successfully measuring the whole global vector wind profile between the lower atmosphere and the middle atmosphere. Compared with other traditional methods, the space-borne coherent wind lidar has some advantages, such as, the all-day operation; many lidar systems can be integrated into the same satellite because of the light-weight and the small size, eye-safe wavelength, and being insensitive to the background light. Therefore, this coherent lidar could be widely applied into the earth climate research, disaster monitoring, numerical weather forecast, environment protection. In this paper, the 2μm space-borne coherent wind lidar system for measuring the vector wind profile is proposed. And the technical parameters about the sub-system of the coherent wind lidar are simulated and the all sub-system schemes are proposed. For sake of validating the technical parameters of the space-borne coherent wind lidar system and the optical off-axis telescope, the weak laser signal detection technique, etc. The proto-type coherent wind lidar is produced and the experiments for checking the performance of this proto-type coherent wind lidar are finished with the hard-target and the soft target, and the horizontal wind and the vertical wind profile are measured and calibrated, respectively. For this proto-type coherent wind lidar, the wavelength is 1.54μm, the pulse energy 80μJ, the pulse width 300ns, the diameter of the off-axis telescope 120mm, the single wedge for cone scanning with the 40° angle, and the two dual-balanced InGaAs detector modules are used. The experiment results are well consisted with the simulation process, and these results show that the wind profile between the vertical altitude 4km can be measured, the accuracy of the wind velocity and the wind direction are better than lm/s and ±10°, respectively.
机译:空间传播的穿着风潮技术被认为是成功测量下大气层和中部大气之间的全球传染媒介风型材的最有前途和适当的遥感方法之一。与其他传统方法相比,空间 - 传统的连贯风潮激光雷达有一些优势,如全天运行;由于轻量级和小尺寸,眼睛安全波长,并且对背景光不敏感,许多LIDAR系统可以集成到相同的卫星中。因此,这种相干的激光雷达可以广泛应用于地球气候研究,灾害监测,数值天气预报,环境保护。本文提出了用于测量矢量风剖面的2μm空间的相干风潮系统。仿真关于相干风激光雷达的子系统的技术参数,并提出了所有子系统方案。为了验证空间相干风潮系统的技术参数和光学轴伸缩镜,弱激光信号检测技术等。生产原型相干风潮,以及检查性能的实验该原型相干风激光雷达与硬目标和软目标完成,分别测量和校准水平风和垂直风曲线。对于该原型型相干风潮,波长为1.54μm,脉冲能量80μj,脉冲宽度300ns,偏离轴望远镜120mm的直径,用40°角扫描单楔,两个使用双平衡InGaAS检测器模块。实验结果很好地组成了模拟过程,这些结果表明,可以测量垂直高度4km之间的风曲线,风速和风向的精度分别优于LM / s和±10° 。

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