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Waveform model of a laser altimeter for an elliptical Gaussian beam

机译:椭圆高斯光束激光高度计的波形模型

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摘要

The current waveform model of a laser altimeter is based on the Gaussian laser beam of the fundamental mode, whose cross section is a circular spot, whereas some of the cross sections of Geoscience Laser Altimeter System lasers are closer to elliptical spots. Based on the expression of the elliptical Gaussian beam and the waveform theory of laser altimeters, the primary parameters of an echo waveform were derived. In order to examine the deduced expressions, a laser altimetry waveform simulator and waveform processing software were programmed and improved under the circumstance of an elliptical Gaussian beam. The result shows that all the biases between the theoretical and simulated waveforms were less than 0.5%, and the derived model of an elliptical spot is universal and can also be used for the conventional circular spot. The shape of the waveforms is influenced by the ellipticity of the laser spot, the target slope, and the "azimuth angle" between the major axis and the slope direction. This article provides the waveform theoretical basis of a laser altimeter under an elliptical Gaussian beam. (C) 2016 Optical Society of America
机译:激光高度计的当前波形模型基于基本模式的高斯激光束,其横截面为圆形斑点,而Geoscience激光高度计系统激光器的某些横截面更接近椭圆形斑点。基于椭圆高斯光束的表达式和激光高度计的波形理论,推导了回波波形的主要参数。为了检验推导的表达式,在椭圆高斯光束的情况下,对激光测高波形模拟器和波形处理软件进行了编程和改进。结果表明,理论波形和模拟波形之间的所有偏差均小于0.5%,椭圆点的推导模型具有通用性,也可用于常规的圆形点。波形的形状受激光光斑的椭圆率,目标斜率以及主轴与斜率方向之间的“方位角”的影响。本文提供了椭圆高斯光束下激光测高仪的波形理论基础。 (C)2016美国眼镜学会

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