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High-Resolution ISAR Imaging with Wideband V-FM Waveforms

机译:具有宽带V-FM波形的高分辨率ISAR成像

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摘要

V-FM waveforms, composed of two chirp signals with the opposite slopes, can also achieve high range resolution with wide bandwidth via intrapulse frequency modulation. In this paper, a framework for inverse synthetic aperture radar (ISAR) imaging of moving targets with V-FM waveforms is investigated, where the range compression of the received signals is achieved by the dual-channel dechirping and the azimuth compression is done via the traditional Fourier transform (FT). The two corresponding reconstructed temporary high-resolution range profiles (HRRPs) from the double channels are synthesized for the HRRPs of the target, in which one is flipped from left to right and added to the other. Then the final HRRPs are arranged into a two-dimensional (2D) array and the azimuth compression is done via FT to achieve the ISAR imaging after the motion compensation. Simulated trials, adopting the scattering center modeling of the Yak-42 plane, are used to validate the correctness of the analyses and the finally well-focused images greatly support the effectiveness of V-FM waveforms in ISAR imaging.
机译:V-FM波形,与所述相反的斜率2个线性调频信号构成,也可以实现与通过脉内频率调制宽带宽高距离分辨率。在本文中,对于逆合成孔径雷达(ISAR)移动与V-FM波形目标成像的框架进行了研究,其中,所接收的信号的范围压缩是由双通道dechirping和方位压缩实现经由完成传统的傅立叶变换(FT)。两个对应的重构临时高分辨率范围从双通道配置文件(HRRPs)的目标的HRRPs,其中从左至右并加入到另一个被翻转合成。然后最终HRRPs被布置成二维(2D)阵列和方位压缩经由FT进行,以获得所述运动补偿后的ISAR成像。模拟试验中,采用牦牛42平面的散射中心建模,用于验证该分析的正确性和最后良好聚焦的图像大大支持的V-FM波形ISAR成像的有效性。

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