Three-dimensional imaging of the object using multiple eigenvectors in the CW laser array imaging system

O. Ikeda
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Abstract

A CW laser array imaging system designed to obtain precise images of the object, where the eigenvector of the largest eigenvalue is derived from the array data collected and is then computationally beamsteared, has been presented by the author. However, only two-dimensional imaging of the object is achievable with the system. Both the data acquisition system and the algorithm are modified, aimed at achieving three-dimensional imaging. A target is placed near the apertures as part of the object, and multiple eigenvectors with the largest eigenvalues are derived to estimate, through a Fourier analysis, the three-dimensional positions of the representative object points. First, the spatial heterodyne detection process is described, second, the signal processing is explained, and, third, some results of computer simulation are given.
在连续波激光阵列成像系统中,利用多个特征向量对目标进行三维成像
本文提出了一种连续波激光阵列成像系统,该系统利用所采集的阵列数据推导出最大特征值的特征向量,然后进行计算波束定向,以获得目标的精确图像。然而,该系统只能实现物体的二维成像。对数据采集系统和算法进行了改进,旨在实现三维成像。将目标作为目标的一部分放置在孔径附近,并推导出具有最大特征值的多个特征向量,通过傅里叶分析估计具有代表性的目标点的三维位置。首先介绍了空间外差的检测过程,然后对信号处理进行了说明,最后给出了一些计算机仿真结果。
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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