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Estimation of the spatial distribution of a laser beam from the ratios of geometrical factors

机译:从几何因子比率估计激光束的空间分布

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The spatial distribution of laser beam itself and the alignment of the receiving-transmitting system are very important parameters in quantitative analysis of Lidar signal. This is important because the beam shape and the inclination angle between axes of the transmitter and receiver change the physical quality of detecting elements, for example, the aerosol scattering coefficient and the concentration of pollutants, etc. In practical alignment of Lidar system, the inclination angle is allowed to fluctuate within the receiver field of view. At a long distance where geometric overlap is complete, this fluctuation has no influence on the final results, but at a short distance this effect is serious. If we know the distribution of laser beam and inclination angle, this effect can be corrected by using geometrical overlap function. In this study, we have calculated the geometrical overlap function for Gaussian and uniform distributions, respectively. It is found that the ratio-function, which is defined as the ratio of two geometrical functions obtained from different angles between the axes of the transmitter and receiver, behaves in different way for Gaussian and uniform laser beams. The completely different behavior of these two ratio-functions for different beam types can be used more conveniently in identifying the laser beam shape and inclination angle than geometrical functions only. This fact can be used for characterizing the spatial distribution of laser beam and for testing of alignment between receiver and transmitter.
机译:激光束本身的空间分布和接收传输系统的对准是LIDAR信号的定量分析中的非常重要的参数。这是重要的,因为发射器和接收器的轴之间的梁形状和倾斜角改变检测元件的物理质量,例如,潮汐系统的实际对准中的气溶胶散射系数和污染物的浓度等。允许角度在接收器视场内波动。在几何重叠完成的长距离,这种波动对最终结果没有影响,但在短距离下这种效果是严重的。如果我们知道激光束和倾斜角的分布,可以通过使用几何重叠功能来校正这种效果。在本研究中,我们已经分别计算了高斯和均匀分布的几何重叠功能。发现,定义为从发射​​器和接收器轴之间的不同角度获得的两个几何功能的比率的比率功能以不同的方式为高斯和均匀激光束的方式行事。对于不同光束类型的这两个比率函数的完全不同的行为可以更方便地在识别激光束形状和倾斜角度而不是几何函数。该事实可用于表征激光束的空间分布和用于在接收器和发射器之间的对准测试。

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