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A MIMO-SAR Tomography Algorithm Based on Fully-Polarimetric Data

机译:基于全测压数据的MIMO-SAR层析成像算法

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摘要

A fully-polarimetric unitary multiple signal classification (UMUSIC) tomography algorithm is proposed, which can be used for acquiring high-resolution three-dimensional (3D) imagery, in a polarimetric multiple-input multiple-output synthetic aperture radar (MIMO-SAR) with a small number of baselines. In terms of the elevation resolution, UMUSIC provides an improvement over standard MUSIC by utilizing the conjugate of the complex sample data and converting the complex covariance matrix into a real matrix. The combination of UMUSIC and fully-polarimetric data permits a further reduction of the noise of the sample covariance matrix, which is obtained through pixel averaging of multiple two-dimensional (2D) images. Considering the consistency of four polarizations, this algorithm not only makes scattering centers have the same estimated height in four polarizations, but it also improves the estimation accuracy. Simulation results show that this algorithm outperforms the popular distributed compressed sensing (DCS). Image processing of measured data of an aircraft model using a multiple-input multiple-output synthetic aperture radar (MIMO-SAR) with six baselines is presented to validate the proposed algorithm.
机译:提出了一种全偏振单信号多信号分类(UMUSIC)层析成像算法,该算法可用于偏振多输入多输出合成孔径雷达(MIMO-SAR)中获取高分辨率三维(3D)图像。基线数量很少。在高程分辨率方面,UMUSIC通过利用复杂样本数据的共轭并将复杂协方差矩阵转换为真实矩阵,提供了对标准MUSIC的改进。 UMUSIC和全极化数据的组合可进一步降低样本协方差矩阵的噪声,这是通过对多个二维(2D)图像进行像素平均获得的。考虑到四个极化的一致性,该算法不仅使散射中心在四个极化中具有相同的估计高度,而且提高了估计精度。仿真结果表明,该算法优于流行的分布式压缩感知(DCS)算法。提出了使用具有六个基线的多输入多输出合成孔径雷达(MIMO-SAR)对飞机模型的测量数据进行图像处理,以验证该算法的有效性。

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