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Spatial Baseline Optimization for Spaceborne Multistatic SAR Tomography Systems

机译:星载多静态SAR层析成像系统的空间基线优化

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摘要

Spaceborne multistatic synthetic aperture radar (SAR) tomography (SMS-TomoSAR) systems take full advantage of the flexible configuration of multistatic SAR in the space, time, phase, and frequency dimensions, and simultaneously achieve high-precision height resolution and low-deformation measurement of three-dimensional ground scenes. SMS-TomoSAR currently poses a series of key issues to solve, such as baseline optimization, spatial transmission error estimation and compensation, and the choice of imaging algorithm, which directly affects the performance of height-dimensional imaging and surface deformation measurement. This paper explores the impact of baseline distribution on height-dimensional imaging performance for the baseline optimization issue, and proposes a feasible baseline optimization method. Firstly, the multi-base multi-pass baselines of an SMS-TomoSAR system are considered equivalent to a group of multi-pass baselines from monostatic SAR. Secondly, we establish the equivalent baselines as a symmetric-geometric model to characterize the non-uniform characteristic of baseline distribution. Through experimental simulation and model analysis, an approximately uniform baseline distribution is shown to have better SMS-TomoSAR imaging performance in the height direction. Further, a baseline design method under uniform-perturbation sampling with Gaussian distribution error is proposed. Finally, the imaging performance of different levels of perturbation is compared, and the maximum baseline perturbation allowed by the system is given.
机译:星载多静态合成孔径雷达(SAR)层析成像(SMS-TomoSAR)系统在空间,时间,相位和频率维度上充分利用了多静态SAR的灵活配置,同时实现了高精度的高度分辨率和低变形测量三维地面场景。 SMS-TomoSAR当前提出了一系列要解决的关键问题,例如基线优化,空间传输误差估计和补偿以及成像算法的选择,这些问题直接影响到高维成像和表面变形测量的性能。本文探讨了基线分配对高度维成像性能的影响,以解决基线优化问题,并提出了一种可行的基线优化方法。首先,SMS-TomoSAR系统的多基准多通基准被认为等同于单基地SAR的一组多通基准。其次,我们建立等效基线作为对称几何模型,以表征基线分布的非均匀特征。通过实验模拟和模型分析,显示出近似均匀的基线分布在高度方向上具有更好的SMS-TomoSAR成像性能。此外,提出了在具有高斯分布误差的均匀摄动采样下的基线设计方法。最后,比较了不同摄动水平的成像性能,并给出了系统允许的最大基线摄动。

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