首页> 外文期刊>Journal of the Indian Society of Remote Sensing >Volume Height Estimation based on Fusion of Discrete Fourier Transform (DFT) and Least Square (LS) in a Tomographic SAR Application
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Volume Height Estimation based on Fusion of Discrete Fourier Transform (DFT) and Least Square (LS) in a Tomographic SAR Application

机译:基于分层SAR应用中离散傅里叶变换(DFT)和最小二乘(LS)的融合的体积高度估计

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摘要

Tomographic-SAR (Synthetic Aperture Radar) is a 3D Radar imaging technique, based on spectral estimation tools. This technique is used to estimate the distribution of the backscattering signal in the elevation axis, for each azimuth-range resolution cell of the SAR image. Spectral estimation algorithms belong to two families, non parametric estimation algorithms which include DFT (Discrete Fourier Transform), SVD (Single Value Decomposition), MUSIC (Multiple Signal Classification), CAPON and parametric estimation algorithms such as LS (Least Square) and ESPRIT (Estimation of signal parameters via rotation invariance techniques). In this paper we present an inversion algorithm based on the fusion of DFT and LS for the estimation of the reflectivity signal along the elevation axis. With an appropriate combination of these two algorithms and a realistic modeling of the signal distribution, we obtain a high resolution estimate of the reflectivity signal with medium computational effort. The inversion algorithm is tested on a forested area (Vasterbotten in northern Sweden), with multibaseline data set acquired in L-band (BioSAR-2008 project). Results are promising with the proposed algorithm. We used MUSIC and RVoG (Random Volume over Ground) inversions for comparison and LIDAR (Laser Imaging Detection And Ranging) image as datasets for validation of the results.
机译:断层图 - SAR(合成孔径雷达)是一种基于光谱估计工具的3D雷达成像技术。该技术用于估计SAR图像的每个方形范围分辨率的升降轴中的反向散射信号的分布。频谱估计算法属于两个系列,包括DFT(离散傅里叶变换),SVD(单值分解),音乐(多信号分类),CAPON和参数估计算法,如LS(最小二乘)和ESPRIT(通过旋转不变性技术估计信号参数。本文介绍了一种基于DFT和LS融合的反演算法,用于沿着仰角沿升降轴估计反射率信号。通过这两种算法的适当组合和信号分布的现实建模,我们获得了具有中等计算工作的反射率信号的高分辨率估计。在森林区域(瑞典北部Vasterbotten)测试反演算法,在L波段中获取的多元线数据集(BioSAR-2008项目)。结果具有提出的算法具有很有希望。我们使用音乐和rvog(随机体积在地面)反转,以便比较和激光雷达(激光成像检测和测距)图像作为数据集,用于验证结果。

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