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An approach for refocusing of ground fast-moving target and high-order motion parameter estimation using Radon-high-order time-chirp rate transform

机译:一种基于Radon高阶时间rate率变换的地面快速移动目标重新聚焦和高阶运动参数估计的方法

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Long synthetic aperture time can improve the imaging quality of a ground moving target, whereas a moving target may be severely smeared in the cross-range image due to the range migration and the Doppler frequency migration. In this paper, the effects of the third-order Doppler broadening and Doppler ambiguity of a fast-moving target are considered. To address these issues, a novel motion parameter estimation method named high-order time-chirp rate transform (HTRT) is proposed, and then a new synthetic aperture radar (SAR) imaging method based on Radon-HTRT (RHTRT) for a ground moving target is developed. The major contributions are as follows: 1) The proposed SAR imaging method can eliminate the Doppler ambiguity effect. 2) The proposed method can realize longer time coherent integration than Radon-Fourier transform (RFT) and Radon-fractional Fourier transform (RFRFT) methods. 3) The proposed method is computationally efficient since HTRT can obtain the motion parameters of a moving target via performing the 2-dimensional (2-D) fast Fourier transform (FFT). Both the simulated and real data processing results show that the proposed method can finely image a ground moving target in a high signal-to-clutter and noise ratio (SCNR) environment. (C) 2015 Elsevier Inc. All rights reserved.
机译:较长的合成孔径时间可以改善地面移动目标的成像质量,而由于距离迁移和多普勒频率迁移,移动目标可能会在跨范围图像中严重模糊。在本文中,考虑了快速移动目标的三阶多普勒展宽和多普勒模糊性的影响。为了解决这些问题,提出了一种新的运动参数估计方法,称为高阶时间-率变换(HTRT),然后提出了一种基于Rad-HTRT(RHTRT)的合成孔径雷达(SAR)成像方法。目标已经制定。主要贡献如下:1)提出的SAR成像方法可以消除多普勒模糊效应。 2)与Radon-Fourier变换(RFT)和Radon-分数阶傅里叶变换(RFRFT)方法相比,该方法可以实现更长的时间相干积分。 3)由于HTRT可以通过执行二维(2-D)快速傅里叶变换(FFT)来获得运动目标的运动参数,因此该方法在计算上是有效的。仿真和实际数据处理结果均表明,该方法可以在高信噪比(SCNR)环境下对地面运动目标进行精细成像。 (C)2015 Elsevier Inc.保留所有权利。

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