首页> 外文会议>Synthetic Aperture Radar, 2012. EUSAR. 9th European Conference on >Comparison of different polarimetric tomographic estimation techniques with respect to LiDAR measurements for the 3-D characterization of buildings using intermediate resolution L-band SAR data sets
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Comparison of different polarimetric tomographic estimation techniques with respect to LiDAR measurements for the 3-D characterization of buildings using intermediate resolution L-band SAR data sets

机译:使用中分辨率L波段SAR数据集针对建筑物3D表征的LiDAR测量的不同极化层析成像估计技术的比较

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This paper addresses 3-D characterization of buildings using diverse tomographic techniques. Due to their high resolution, parametric tomographic estimators like MUSIC,Maximum likelihood (ML) and subspace fitting estimators are presented and used to to resolve scatterers' layover problem and to extract their physical features. Considering the statistical behaviors of scatterers generally encountered in SAR images, conventional estimators may have some limitations. Dealing with different scattering natures, Weighted Subspace Fitting (WSF) methods are hence applied to estimate building heights. Based on Noise Subspace Fitting (NSF), a fully polarimetric (FP) estimator, named FP-NSF, is developed as well as its analytic solution. These estimators are applied to dual-baseline PolInSAR data acquired by DLR's ESAR at L-band over Dresden city, Germany. The estimates of building heights are validated against LiDAR measurements.
机译:本文介绍了使用多种层析成像技术对建筑物进行3-D表征的方法。由于其高分辨率,提出了像MUSIC,最大似然(ML)和子空间拟合估计器之类的参数层析估计器,并用于解决散射体的中转问题并提取其物理特征。考虑到SAR图像中通常遇到的散射体的统计行为,常规估计器可能会有一些限制。因此,针对不同的散射性质,加权子空间拟合(WSF)方法被应用于估计建筑物的高度。基于噪声子空间拟合(NSF),开发了名为FP-NSF的全偏振(FP)估计器及其解析解决方案。这些估算器应用于DLR的ESAR在德国德累斯顿市L波段获得的双基线PolInSAR数据。建筑物高度的估计值已针对LiDAR测量进行了验证。

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