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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 Targets With Complex Motions Based on Modified Lv’s Distribution for Cubic Phase Signal
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ISAR Imaging of Targets With Complex Motions Based on Modified Lv’s Distribution for Cubic Phase Signal

机译:基于修正Lv分布的立方相位信号的复杂运动目标的ISAR成像

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摘要

For targets with complex motions, such as highly maneuvering airplanes and ships fluctuating with oceanic waves, the Doppler frequencies of scatterers are actually time-varying and azimuth echoes of a range cell have to be modeled as multicomponent cubic phase signals (CPSs) after the range alignment and the phase adjustment. In inverse synthetic aperture radar (ISAR) imaging based on the CPS model, the chirp rate and the quadratic chirp rate are identified as causes of the image defocus. In this paper, by employing a novel parametric symmetric self-correlation function and the keystone transform, an effective estimation algorithm, known as the modified Lv’s distribution (MLVD), is presented for the CPS and applied to ISAR imaging of targets with complex motions. The MLVD is simple and can be easily implemented using the complex multiplication, the fast-Fourier transform (FFT), and the inverse FFT (IFFT). The implementation, the cross-term, the antinoise performance, and the computational cost are analyzed for the MLVD. Compared to three representative estimation algorithms for the CPS, the MLVD can acquire a higher antinoise performance and eliminate the brute-force searching without the interpolation. Through simulations and analyses for synthetic models and the real radar data, we verify the effectiveness of the MLVD and the corresponding ISAR imaging algorithm.
机译:对于具有复杂运动的目标,例如机动性强的飞机和随海浪而波动的船舶,散射器的多普勒频率实际上是随时间变化的,并且测距单元的方位回波必须建模为测距后的多分量立方相位信号(CPS)对准和相位调整。在基于CPS模型的逆合成孔径雷达(ISAR)成像中,the率和二次chi率被确定为图像散焦的原因。在本文中,通过使用新颖的参数对称自相关函数和梯形失真变换,提出了一种有效的估计算法,称为修正Lv分布(MLVD),用于CPS,并应用于具有复杂运动的目标的ISAR成像。 MLVD很简单,可以使用复数乘法,快速傅立叶变换(FFT)和逆FFT(IFFT)轻松实现。分析了MLVD的实现,交叉项,抗噪声性能和计算成本。与CPS的三种代表性估计算法相比,MLVD可以获得更高的抗噪性能,并且无需插值即可消除蛮力搜索。通过对合成模型和真实雷达数据的仿真和分析,我们验证了MLVD和相应的ISAR成像算法的有效性。

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