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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >ISAR Imaging of Non-Uniformly Rotating Target via Range-Instantaneous-Doppler-Derivatives Algorithm
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ISAR Imaging of Non-Uniformly Rotating Target via Range-Instantaneous-Doppler-Derivatives Algorithm

机译:距离瞬时多普勒导数算法对非均匀旋转目标的ISAR成像

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摘要

Inverse synthetic aperture radar (ISAR) imaging of non-uniformly rotating target is very significant in many applications. In this case, the Doppler frequency for a scatterer is time-varying, and the traditional Range-Doppler (RD) algorithm is not appropriate for the azimuth focusing. In this paper, the received signal in a range bin is assumed to be multi-component polynomial phase signal (PPS), and a novel approach for ISAR imaging of non-uniformly rotating target via Range-Instantaneous-Doppler-Derivatives (RIDD) algorithm is proposed. For the RIDD algorithm, the cross-range resolution is derived by the arbitrary order of Doppler derivatives, and it is the generalization and extension form of the traditional Range-Instantaneous-Doppler (RID) and Range-Instantaneous-Chirp-Rate (RIC) algorithms. Results of simulated and raw data demonstrate the effectiveness of the new method proposed.
机译:非均匀旋转目标的逆合成孔径雷达(ISAR)成像在许多应用中非常重要。在这种情况下,散射体的多普勒频率是随时间变化的,并且传统的距离多普勒(RD)算法不适用于方位聚焦。本文假设距离仓中的接收信号为多分量多项式相位信号(PPS),并且通过距离瞬时多普勒导数(RIDD)算法对非均匀旋转目标进行ISAR成像的新方法被提议。对于RIDD算法,跨范围分辨率是由多普勒导数的任意阶数得出的,它是传统的Range-Instantaneous-Doppler(RID)和Range-Instantaneous-Chirp-Rate(RIC)的推广和扩展形式。算法。模拟和原始数据的结果证明了所提出的新方法的有效性。

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