Experimental study of the compensation method for atmospheric attenuation of probing laser radiation in active electro-optical systems that provide an increase of target image contrast

L. Kupchenko, A. S. Rybiak, О.А. Goorin, A.P. Hurin, А.V. Ponomar, O. Biesova
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Abstract

The article deals with the experimental study of the compensation method for atmospheric attenuation of laser radiation in active electro-optical remote sensing systems with dynamic spectral processing of optical signals that provides an increase of target image contrast. The compensation method for atmospheric attenuation of laser radiation in active electro-optical systems consists in forming the spectral intensity of the probing radiation not only on the basis of a priori data on the spectral features of the reflecting surfaces of the target and the background, but also taking into account the spectral transmittance of the optical radiation propagation medium. The experimental setup has been developed, in which the source of radiation in the transmitting part of the electro- optical system is three semiconductor lasers operating in the ranges of the red, green and blue parts of the spectrum. Absorption light filters were used in the experiment as elements simulating the spectral properties of the reflecting surfaces of the target and background. The cuvettes with a liquid absorbing optical radiation were used as elements simulating atmospheric attenuation.
有源电光系统探测激光辐射大气衰减补偿方法的实验研究,以提高目标图像对比度
本文通过对光信号进行动态光谱处理,提高目标图像对比度,对有源电光遥感系统中激光辐射大气衰减的补偿方法进行了实验研究。在有源电光系统中,大气对激光辐射衰减的补偿方法不仅是根据目标和背景反射面光谱特征的先验数据来形成探测辐射的光谱强度,而且还要考虑光辐射传播介质的光谱透射率。建立了一种实验装置,其中电光系统发射部分的辐射源是在光谱的红、绿、蓝部分范围内工作的三个半导体激光器。实验采用吸收滤光片作为模拟目标和背景反射表面光谱特性的元件。采用液体吸收光辐射的比色皿作为模拟大气衰减的元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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