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Micro-Doppler Reconstruction in Spaceborne SAR Images Using Azimuth Time–Frequency Tracking of the Phase History

机译:使用方位角时频跟踪的星载SAR图像中的微多普勒重建

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This letter proposes a micro-Doppler (m-D) reconstruction method for spaceborne synthetic aperture radar (SAR) images using azimuth time–frequency tracking of the phase history. The algorithm involves an azimuth defocusing of the SAR image in order to gain access to the phase history, followed by a time–frequency tracking algorithm. The tracking in azimuth is based on local polynomial phase modeling using as estimator for the polynomial coefficients the high-order ambiguity function. The approach is presented in the context of vibration estimation for infrastructure monitoring applications, with an emphasis on the estimation of vibration parameters from the reconstructed m-D. The procedure is tested and compared with state-of-the-art methods by various simulation scenarios in keeping with typical high-resolution SAR imaging parameters. Finally, the developed algorithm is applied on real data acquired by the TerraSAR-X satellite over the Puylaurent water dam in France.
机译:这封信提出了一种使用相位历史的方位角时频跟踪技术对星载合成孔径雷达(SAR)图像进行微多普勒(m-D)重建的方法。该算法包括对SAR图像进行方位散焦,以获取对相位历史的访问,然后是时频跟踪算法。方位角的跟踪基于局部多项式相位建模,该建模使用高阶模糊函数作为多项式系数的估计量。该方法是在基础设施监控应用的振动估计的背景下提出的,重点是从重构的m-D估计振动参数。在符合典型高分辨率SAR成像参数的情况下,通过各种模拟场景对该程序进行了测试并与最新方法进行了比较。最后,将开发的算法应用于法国Puylaurent水坝上TerraSAR-X卫星采集的真实数据。

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