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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Focus Improvement of Squint Bistatic SAR Data Using Azimuth Nonlinear Chirp Scaling
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Focus Improvement of Squint Bistatic SAR Data Using Azimuth Nonlinear Chirp Scaling

机译:利用方位角非线性线性调频标度改进双蹲SAR数据的聚焦

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摘要

High-resolution imaging for squint azimuth-variant bistatic synthetic aperture radar system is a challenging task due to the existence of the spatial variance of range cell migration (RCM) and Doppler frequency modulation (FM) rate. To address this problem, azimuth nonlinear chirp scaling (ANLCS) is investigated in this letter. First, linear range walk is removed and then ANLCS is applied in the range frequency azimuth time domain to correct the azimuth-variant RCMs and to equalize the different FM rates. Taking the 2-D variance caused by the azimuth-variant configuration into consideration, a new perturbation function is derived based on the bistatic geometry. Using method of series reversion, a close form of range-azimuth coupling is obtained and corrected in the range Doppler domain by an interpolation-free operation. Incorporated with the secondary range compression, this method leads to a more accurate focusing for azimuth-variant bistatic configurations, even with high squints. Simulation results validate the effectiveness of the method.
机译:斜视方位角可变双基地合成孔径雷达系统的高分辨率成像是一项具有挑战性的任务,因为存在距离细胞迁移(RCM)和多普勒频率调制(FM)速率的空间差异。为了解决这个问题,本文研究了方位角非线性线性调频标度(ANLCS)。首先,去除线性测距,然后在测距频率方位角时域中应用ANLCS,以校正方位角可变RCM并均衡不同的FM速率。考虑到由方位角变量配置引起的二维方差,基于双站几何结构导出了新的摄动函数。使用串联反转的方法,获得了距离-方位耦合的紧密形式,并通过无插值操作在距离多普勒域中对其进行了校正。结合次级范围压缩,此方法即使方位角很大,也可以对方位角可变的双基地配置进行更精确的聚焦。仿真结果验证了该方法的有效性。

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