首页> 外文会议>Sixth European Conference on Underwater Acoustics ECUA 2002 Jun 24-27, 2002 Gdansk >Imaging and Motion Estimation for Synthetic Aperture Sonar Based on Fast Factorised Back-Projection
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Imaging and Motion Estimation for Synthetic Aperture Sonar Based on Fast Factorised Back-Projection

机译:基于快速分解背投影的合成孔径声纳成像与运动估计

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Synthetic Aperture Sonar (SAS) provides a large improvement in azimuth resolution compared with conventional side-scan sonar. This improvement is achieved by combining the data from a number of pings to synthesise a long virtual receive array. Difficulties in forming a SAS image arise from the need for complex processing techniques and accurate knowledge of platform position. A number of synthetic aperture imaging (inversion) algorithms have been developed for both Synthetic Aperture Radar (SAR) and SAS. The vast majority of these techniques work in the frequency domain and are best suited to processing data formed from a nominally linear, evenly sampled synthetic aperture. An exception to this is the exact time domain technique; however this has a computational complexity of O(N~3) so is prohibitively slow even for small data sets. Fast Factorised Back Projection (FFBP) is an inversion technique recently developed for SAR. FFBP overcomes many of the problems associated with other inversion methods in that it can cope with general aperture geometry, is fast, and has a very low memory requirement. This paper discusses the application of FFBP to SAS, along with using the framework of FFBP to develop motion estimation techniques. Results using real data are presented.
机译:与传统的侧扫声纳相比,合成孔径声纳(SAS)在方位角分辨率上有很大的提高。通过组合来自多个ping的数据以合成长的虚拟接收阵列来实现此改进。形成SAS映像的困难是由于需要复杂的处理技术和对平台位置的准确了解。已经为合成孔径雷达(SAR)和SAS开发了许多合成孔径成像(反演)算法。这些技术中的绝大多数工作在频域,最适合处理名义上线性,均匀采样的合成孔径形成的数据。确切的时域技术是一个例外。但是,这具有O(N〜3)的计算复杂度,因此即使对于较小的数据集,其速度也极慢。快速分解反投影(FFBP)是最近为SAR开发的一种反演技术。 FFBP克服了许多与其他反演方法相关的问题,因为它可以应付一般的孔径几何形状,速度快,并且对内存的需求非常低。本文讨论了FFBP在SAS中的应用,以及使用FFBP框架开发运动估计技术的方法。给出了使用真实数据的结果。

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