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Dynamic ISAR Imaging of Maneuvering Targets Based on Sequential SL0

机译:基于序列SL0的机动目标动态ISAR成像

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For maneuvering targets, the time-varying Doppler shifts will produce blurred inverse synthetic aperture radar (ISAR) images for a long coherent processing interval (CPI). By exploiting sparsity of the target scene, sparse recovery (SR) algorithms have been applied to achieve high cross-range resolution within a short CPI, during which the Doppler shifts nearly remain constant. For practical applications, however, the required pulse number for attaining an acceptable image is difficult to designate in various scenarios, and the common recovery procedure suffers from low efficiency because of having to solve a new SR problem from scratch when the new echo pulses are sequentially available. In this letter, we present a dynamic ISAR imaging algorithm based on sequential smoothed L0, which is proposed as an efficient recursive implementation of the SR approach. Furthermore, by defining the proper stopping rules, we can seek the optimal pulse number required in each CPI. Simulation results show that the proposed dynamic algorithm is more suitable for ISAR imaging of uncooperative targets.
机译:对于机动目标,时变多普勒频移会在较长的相干处理间隔(CPI)内产生模糊的合成孔径雷达逆向(ISAR)图像。通过利用目标场景的稀疏性,稀疏恢复(SR)算法已应用于在短CPI内实现高跨范围分辨率的过程中,在此期间多普勒频移几乎保持恒定。然而,对于实际应用,难以在各种情况下指定获得可接受图像所需的脉冲数,并且由于当新的回波脉冲依次出现时必须从头解决新的SR问题,因此普通的恢复过程效率低下。可用。在这封信中,我们提出了一种基于顺序平滑L0的动态ISAR成像算法,该算法被建议作为SR方法的有效递归实现。此外,通过定义适当的停止规则,我们可以找到每个CPI所需的最佳脉冲数。仿真结果表明,所提出的动态算法更适合于非合作目标的ISAR成像。

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