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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Cross-step parallel confocal image processing algorithms used in spatial domain for synthetic-aperture imaging ladars
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Cross-step parallel confocal image processing algorithms used in spatial domain for synthetic-aperture imaging ladars

机译:Cross-step并行共焦图像处理在空间域算法合成孔径成像激光雷达

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摘要

Two-dimensional (2D) step parallel confocal image processing algorithm for synthetic aperture imaging ladar (SAIL) is proposed. The feature of the algorithm is the collected data are confocal imaged in space domain by 2D Fourier transform. The collected data are first expressed by separation of variables and time-domain data are translated into a spatial coordinate expression suitable for space optical conversion, compensated with an azimuth quadratic phase and then imaged in space domain by 2D Fourier transform. Functions of the algorithm for SAIL with rectangular apertures is described and analyzed in terms of continuous variables and functions. Then the position of the imaging point is given. The technique is a new, one-step confocal imaging method for ladar echo signal. The confocal image processing is simplified and the imaging time is shortened. The requirement of a ladar image processing system is also reduced. It has a significant advantage in the data processing of synthetic-aperture ladar target echo confocal imaging. (C) 2015 Elsevier GmbH. All rights reserved.
机译:二维(2 d)一步并行共焦图像为合成孔径处理算法提出了成像激光雷达(航行)。该算法是共焦收集到的数据通过二维傅里叶变换成像在太空领域。收集到的数据是第一次表达了变量和时域数据的分离翻译成一个空间坐标表达式适合空间光学转换,补偿的方位和二次阶段然后由二维傅里叶空间成像领域变换。与矩形光阑和描述在连续变量和分析功能。是给定的。共焦成像激光雷达回波信号的方法。简化和共焦图像处理成像时间缩短。也减少了激光雷达图像处理系统。它有一个显著的优势数据合成孔径激光雷达目标的处理回声共焦成像。保留所有权利。

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