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Distributed ISAR Subimage Fusion of Nonuniform Rotating Target Based on Matching Fourier Transform

机译:基于匹配傅里叶变换的非均匀旋转目标分布式ISAR子图像融合

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摘要

In real applications, the image quality of the conventional monostatic Inverse Synthetic Aperture Radar (ISAR) for the maneuvering target is subject to the strong fluctuation of Radar Cross Section (RCS), as the target aspect varies enormously. Meanwhile, the maneuvering target introduces nonuniform rotation after translation motion compensation which degrades the imaging performance of the conventional Fourier Transform (FT)-based method in the cross-range dimension. In this paper, a method which combines the distributed ISAR technique and the Matching Fourier Transform (MFT) is proposed to overcome these problems. Firstly, according to the characteristics of the distributed ISAR, the multiple channel echoes of the nonuniform rotation target from different observation angles can be acquired. Then, by applying the MFT to the echo of each channel, the defocused problem of nonuniform rotation target which is inevitable by using the FT-based imaging method can be avoided. Finally, after preprocessing, scaling and rotation of all subimages, the noncoherent fusion image containing all the RCS information in all channels can be obtained. The accumulation coefficients of all subimages are calculated adaptively according to the their image qualities. Simulation and experimental data are used to validate the effectiveness of the proposed approach, and fusion image with improved recognizability can be obtained. Therefore, by using the distributed ISAR technique and MFT, subimages of high-maneuvering target from different observation angles can be obtained. Meanwhile, by employing the adaptive subimage fusion method, the RCS fluctuation can be alleviated and more recognizable final image can be obtained.
机译:在实际应用中,机动目标的常规单静态逆合成孔径雷达(ISAR)的图像质量会受到雷达横截面(RCS)的强烈波动的影响,因为目标方面变化很大。同时,机动目标在平移运动补偿之后引入不均匀旋转,这降低了传统的基于傅立叶变换(FT)的方法在跨范围维度上的成像性能。本文提出了一种将分布式ISAR技术与匹配傅里叶变换(MFT)相结合的方法来克服这些问题。首先,根据分布式ISAR的特性,可以从不同的观察角度获取非均匀旋转目标的多通道回波。然后,通过将MFT应用于每个通道的回波,可以避免使用基于FT的成像方法不可避免的旋转目标不均匀的散焦问题。最后,在对所有子图像进行预处理,缩放和旋转之后,可以获得在所有通道中包含所有RCS信息的非相干融合图像。根据所有子图像的图像质量自适应地计算其累积系数。仿真和实验数据被用来验证所提方法的有效性,并获得具有改进的可识别性的融合图像。因此,通过使用分布式ISAR技术和MFT,可以获得来自不同观察角度的高机动目标的子图像。同时,通过采用自适应子图像融合方法,可以减轻RCS波动,并且可以获得更可识别的最终图像。

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