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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Multiview Three-Dimensional Interferometric Inverse Synthetic Aperture Radar
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Multiview Three-Dimensional Interferometric Inverse Synthetic Aperture Radar

机译:多视图三维干涉反合成孔径雷达

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摘要

Three-dimensional (3D) inverse synthetic aperture radar (ISAR) imaging has been proven feasible by combining traditional ISAR imaging and interferometry. Such technique, namely Inteferometric ISAR (InISAR), allows for the main target scattering centers to be mapped into a 3-D spatial domain, therefore forming 3-D images under the form of 3-D point clouds. 3-D InISAR overcomes some main limitations of traditional 2-D ISAR imaging, such as the problem of cross-range scaling and unknown image projection plane. Despite the great advantage of 3-D imaging over traditional 2-D imaging, some issues remain, such as scatterer scintillation, shadowing effects, poor SNR, etc., which limit the effectiveness of 3-D imaging. A solution to these issues can be found in the use of multiple 3-D views, which can be obtained exploiting either multitemporal or multiperspective configurations or a combination of both. This paper proposes this concept and develops the image fusion algorithms that are necessary to produce multiview 3-D ISAR images. The effectiveness of the proposed technique is tested by using real data collected with a multistatic InISAR system.
机译:通过将传统的ISAR成像与干涉测量相结合,已证明了三维(3D)逆合成孔径雷达(ISAR)成像是可行的。这种技术,即Inteferometric ISAR(InISAR),允许将主要目标散射中心映射到3-D空间域,从而以3-D点云的形式形成3-D图像。 3-D InISAR克服了传统2-D ISAR成像的一些主要限制,例如跨范围缩放和未知图像投影平面的问题。尽管3D成像相对于传统2D成像具有巨大优势,但仍然存在一些问题,例如散射闪烁,阴影效应,较差的SNR等,这些问题限制了3D成像的有效性。可以使用多个3-D视图找到这些问题的解决方案,这些视图可以利用多时间或多视角配置或两者的组合来获取。本文提出了这一概念,并开发了产生多视图3-D ISAR图像所需的图像融合算法。通过使用多静态InISAR系统收集的真实数据来测试所提出技术的有效性。

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