Witomski Arnaud, Lacot Eric, Hugon Olivier, Jacquin Olivier
Laboratoire de Spectrométrie Physique, Université Joseph Fourier de Grenoble, UMR CNRS 5588, B.P. 87, 38402 Saint Martin d'Hères, France.
Appl Opt. 2008 Feb 20;47(6):860-9. doi: 10.1364/ao.47.000860.
We have improved the resolution of our laser optical feedback imaging (LOFI) setup by using a synthetic aperture (SA) process. We report a two-dimensional (2D) SA LOFI experiment where the unprocessed image (i.e., the classical LOFI image) is obtained point by point, line after line using full 2D galvanometric scanning. The 2D superresolved image is then obtained by successively computing two angular SA operations while a one-dimensional angular synthesis is preceded by a frequency synthesis to obtain a 2D superresolved image conventionally in the synthetic aperture radar (SAR) method and their corresponding laser method called synthetic aperture ladar. The numerical and experimental results are compared.
我们通过使用合成孔径(SA)技术提高了激光光学反馈成像(LOFI)装置的分辨率。我们报告了一项二维(2D)SA LOFI实验,其中未处理的图像(即经典LOFI图像)是通过使用全二维振镜扫描逐点、逐行获取的。然后,通过依次计算两次角度SA操作来获得二维超分辨图像,而在进行一维角度合成之前先进行频率合成,以按照合成孔径雷达(SAR)方法及其相应的称为合成孔径激光雷达的激光方法常规地获得二维超分辨图像。对数值结果和实验结果进行了比较。