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ISAR Imaging of Maneuvering Targets Based on the Range Centroid Doppler Technique

机译:基于距离质心多普勒技术的机动目标的ISAR成像

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A new inverse synthetic aperture radar (ISAR) imaging approach is presented for application in situations where the maneuverability of noncooperative target is not too severe and the Doppler variation of subechoes from scatterers can be approximated as a first-order polynomial. The proposed algorithm is referred to as the range centroid Doppler (RCD) ISAR imaging technique and is based on the stretch Keystone-Wigner transform (SKWT). The SKWT introduces a stretch weight factor containing a range of chirp rate into the autocorrelation function of each cross-range profile and uses a 1-D interpolation of the phase history which we call stretch keystone formatting. The processing simultaneously eliminates the effects of linear frequency migration for all signal components regardless of their unknown chirp rate in time-frequency plane, but not for the noise or for the cross terms. By utilizing this novel technique, clear ISAR imaging can be achieved for maneuvering targets without an exhaustive search procedure for the motion parameters. Performance comparison is carried out to evaluate the improvement of the RCD technique versus other methods such as the conventional range Doppler (RD) technique, the range instantaneous Doppler (RID) technique, and adaptive joint time-frequency (AJTF) technique. Examples provided demonstrate the effectiveness of the RCD technique with both simulated and experimental ISAR data.
机译:提出了一种新的逆合成孔径雷达(ISAR)成像方法,用于非合作目标的机动性不太严重且来自散射体的子回波的多普勒变化可以近似为一阶多项式的情况。所提出的算法称为距离质心多普勒(RCD)ISAR成像技术,它基于拉伸Keystone-Wigner变换(SKWT)。 SKWT在每个交叉范围轮廓的自相关函数中引入了包含线性调频率范围的拉伸权重因子,并使用了相位历史记录的一维插值法,我们称其为拉伸梯形失真校正格式。该处理同时消除了所有信号分量的线性频率迁移的影响,而不管它们在时频平面中的未知线性调频率如何,但对于噪声或交叉项却没有。通过利用这种新颖的技术,无需对运动参数进行详尽的搜索过程,就可以实现对目标进行清晰的ISAR成像。执行性能比较以评估RCD技术相对于其他方法(如常规距离多普勒(RD)技术,距离瞬时多普勒(RID)技术和自适应联合时频(AJTF)技术)的改进。提供的示例通过模拟和实验性ISAR数据证明了RCD技术的有效性。

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