首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >First Airborne Demonstration of Holographic SAR Tomography With Fully Polarimetric Multicircular Acquisitions at L-Band
【24h】

First Airborne Demonstration of Holographic SAR Tomography With Fully Polarimetric Multicircular Acquisitions at L-Band

机译:在L波段首次进行机载全息SAR层析成像演示,具有全极化多圆采集

获取原文
获取原文并翻译 | 示例

摘要

In the last few years, interest in multicircular synthetic aperture radar (SAR) acquisitions has arisen as a consequence of the potential achievement of full 3-D reconstructions at very high resolution over 360° azimuth angle variation. In particular, SAR systems at low frequencies are sensitive to volumetric backscattering of semi-transparent media, and they allow the imaging of internal structures, such as forests. To achieve a full 3-D reconstruction, a 2-D synthetic aperture is required, consisting of a circular (azimuthal) and a vertical component. This 3-D capability can be understood as the result of the combination of holographic and tomographic techniques. In this paper, both techniques will be presented to establish the concept of holographic SAR tomography (HoloSAR). As a further investigation, this paper also presents an analytical expression of the 3-D impulse response function (IRF) of targets in and off the center of the illuminated area. The IRF is characterized by its spatial resolution and sidelobe power, both being a function of the radar resolution capabilities and the geometric acquisition. The second part of this paper presents a polarimetric analysis of HoloSAR tomograms. In particular, the polarimetric signature of scatterers in forested areas is investigated for three different focusing approaches, namely coherent imaging, incoherent imaging, and the generalized likelihood ratio test (GLRT). The three algorithms use the fast-factorized back-projection (FFBP) for individual circular trajectories, and the latter two use in addition compressive sensing (CS) to retrieve the complex reflectivity in elevation. The IRF is validated using a polarimetric L-band HoloSAR survey, which consists of 19 circular passes conducted by the German Aerospace Center's airborne F-SAR sensor over a test site in Kaufbeuren, Germany. The same data set is used for the analysis of the backscattering of forests. Results show a significant horizontal resol- tion improvement for distributed targets with the coherent imaging approach, whereas a better sidelobe suppression in the direction perpendicular to the line of sight is achieved for the incoherent imaging and the GLRT.
机译:在过去的几年中,由于可能在360°方位角变化范围内以非常高分辨率实现全3D重建,因此对多圆合成孔径雷达(SAR)的采集引起了人们的兴趣。尤其是,低频SAR系统对半透明介质的体积反向散射敏感,并且它们允许对内部结构(例如森林)成像。为了实现完整的3D重建,需要一个2D合成孔径,该孔径由圆形(方位角)和垂直分量组成。可以将这种3D功能理解为全息和层析成像技术相结合的结果。在本文中,将介绍这两种技术来建立全息SAR层析成像(HoloSAR)的概念。作为进一步的研究,本文还提出了在照明区域中心内外的目标的3-D脉冲响应函数(IRF)的解析表达式。 IRF的特征是其空间分辨率和旁瓣功率,这两者都是雷达分辨率能力和几何采集的函数。本文的第二部分介绍了HoloSAR层析成像的极化分析。尤其是,针对三种不同的聚焦方法,研究了林区中散射体的偏振特征,即相干成像,非相干成像和广义似然比检验(GLRT)。三种算法对单个圆形轨迹使用快速分解的反投影(FFBP),后两种算法另外使用压缩感测(CS)来检索高程的复杂反射率。使用极化L波段HoloSAR测量对IRF进行了验证,该测量由德国航空航天中心的机载F-SAR传感器在德国考夫博伊伦的测试地点进行的19次圆形通过组成。同一数据集用于分析森林的反向散射。结果表明,采用相干成像方法可以显着改善分布式目标的水平分辨率,而对于不相干成像和GLRT,可以在垂直于视线方向上更好地抑制旁瓣。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号