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首页> 外文期刊>International journal of antennas and propagation >ISAR Autofocus Imaging Algorithm for Maneuvering Targets Based on Phase Retrieval and Keystone Transform
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ISAR Autofocus Imaging Algorithm for Maneuvering Targets Based on Phase Retrieval and Keystone Transform

机译:基于相位检索和Keystone变换的ISAR机动目标成像算法

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In the current scenario of high-range resolution radar and noncooperative target, the rotational motion parameters of the target are unknown and migration through resolution cells (MTRC) is apparent in the obtained inverse synthetic aperture radar (ISAR)images, in both slant-range and cross-range directions. In the case of the high-speed maneuvering target with a small value of rotation, the phase retrieval algorithm can be applied to compensate for the translational motion to form an autofocusing image. However, when the target has a relatively large rotation angle during the coherent integration time, phase retrieval method cannot get an acceptable image for viewing and analysis as the location of the scatterer will not be true due to the Doppler shift imposed by the target's rotational motion. In this paper, a novel ISAR imaging method for maneuvering targets based on phase retrieval and keystone transform is proposed, which can effectively solve the above problems. First, the keystone transform is used to solve the MTRC effects caused by the rotation component. Next, phase errors caused by the remaining translational motion will be removed by employing phase retrieval algorithm, allowing the scatterers are always kept in their range cells. Finally, the Doppler frequency shifts of scatterers will be time invariant in the phase of the received signal. Furthermore, this approach does not need to estimate the motion parameters of the target, which simplifies the processing steps. The simulated results demonstrate the validity of this method.
机译:在当前的高分辨雷达和非合作目标的情况下,目标的旋转运动参数未知,并且在两个倾斜范围的反合成孔径雷达(ISAR)图像中,通过分辨单元(MTRC)的迁移都很明显。和跨范围方向。在具有较小旋转值的高速机动目标的情况下,可以使用相位检索算法来补偿平移运动以形成自动聚焦图像。但是,当目标在相干积分时间内具有相对较大的旋转角度时,由于目标旋转运动引起的多普勒频移,散射体的位置将不成立,因此相位检索方法无法获得可接受的图像以供查看和分析。提出了一种基于相位检索和梯形失真变换的ISAR机动目标成像新方法,可以有效地解决上述问题。首先,梯形失真校正用于解决由旋转分量引起的MTRC效应。接下来,将通过采用相位检索算法消除由剩余平移运动引起的相位误差,从而使散射体始终保持在其距离单元中。最后,散射体的多普勒频移将在接收信号的相位中随时间变化。此外,该方法不需要估计目标的运动参数,从而简化了处理步骤。仿真结果证明了该方法的有效性。

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