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INVERSE SYNTHETIC APERTURE RADAR IMAGING BASED ON HYPERBOLIC FREQUENCY MODULATED CONTINUOUS WAVEFORM

机译:基于双曲频调制的连续波形的逆合成孔径雷达成像

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The frequency modulated continuous wave (FMCW) has been successfully applied in both synthetic aperture radar (SAR) and inverse synthetic aperture radar (ISAR) imaging in the recent past years, for its advantage in low cost, low powered, and compact. However, the traditional FMCW radars transmit a linear frequency modulated (LFM) waveform with a relatively long time interval. And the assumption of stop-go is no longer valid, for the target's motion during the entire sweep must be taken into account. Therefore, more complicated parametric algorithm should be taken to estimate the phase history of noncooperative target. It is computing expensive and is not practical for some military usage where the real time imaging is required. In the present work, an ISAR imaging method based on the hyperbolic frequency modulated continuous waveform (HFMCW) is proposed. The HFMCW radar echoes are received using a "decurve" method defined in this paper. The hyperbolic frequency modulated (HFM) waveform has inherent Doppler invariant property. Therefore, the focused high resolution range profile (HRRP) can be obtained without estimation of the target's velocity, and the traditional nonparametric motion compensation method can be directly applied in the HFMCW ISAR imaging with high computational efficiency. Finally, numerical results validate the proposed HFMCW-ISAR imaging algorithm.
机译:频率调制的连续波(FMCW)已成功应用于最近几年的合成孔径雷达(SAR)和逆合成孔径雷达(ISAR)成像,其优点在低成本,低功耗和紧凑型。然而,传统的FMCW雷达以相对长的时间间隔发射线性频率调制(LFM)波形。并且停止的假设不再有效,对于目标在整个扫描期间的运动必须考虑到。因此,应采取更复杂的参数算法来估计非自由度目标的相位历史。它是计算昂贵的,对于需要实时成像的某些军用用途,这是不可行的。在本作工作中,提出了一种基于双曲线频率调制连续波形(HFMCW)的ISAR成像方法。使用本文中定义的“羽状”方法接收HFMCW雷达回波。双曲线调制(HFM)波形具有固有的多普勒不变性。因此,可以获得聚焦的高分辨率范围分布(HRRP)而无需估计目标速度,并且传统的非参数运动补偿方法可以直接以高计算效率的HFMCW ISAR成像直接应用。最后,数值结果验证了所提出的HFMCW-ISAR成像算法。

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