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A novel Doppler chirp rate and baseline estimation approach in time domain for multi-channel in azimuth HRWS SAR system

机译:四方HRWS SAR系统多通道时域的新型多普勒啁啾率和基线估计方法

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Similar to the conventional synthetic aperture radar (SAR) imaging processing, the estimation of Doppler chirp rate is one key problem for the multi-channel in azimuth high-resolution and wide-swath (HRWS) SAR system. At the same time, the accurate estimation of baseline in azimuth is also important for the reconstruction of ambiguity-free Doppler spectrum. In this paper, based on the Map Drift algorithm and correlation function approach, a novel Doppler chirp rate estimation approach in time domain is proposed for the multichannel in azimuth HRWS SAR system. Furthermore, a baseline length in azimuth estimation algorithm is developed from the proposed Doppler chirp rate method, which is based on the correlation function between the echoes of adjective channels. The proposed approaches are successfully applied to process the real five-channel HRWS SAR echo and the good performance is demonstrated.
机译:类似于传统的合成孔径雷达(SAR)成像处理,多普勒啁啾速率的估计是方位角高分辨率和宽条(HRWS)SAR系统中多通道的一个关键问题。同时,方位角中基线的准确估计对于无模糊的多普勒频谱的重建也很重要。本文基于地图漂移算法和相关函数方法,提出了一种新的多普勒啁啾速率估计方法,以时代域中的多声道SAR系统。此外,从所提出的多普勒啁啾速率方法开发了方位估计算法中的基线长度,这是基于形容词信道的回波之间的相关函数。建议的方法成功应用于处理真正的五通道HRWS SAR回声,并且证明了良好的性能。

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