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Preliminary Results of Multichannel SAR-GMTI Experiments for Airborne Quad-Pol Radar System

机译:空气传播四极雷达系统多通道SAR-GMTI实验的初步结果

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Much research from open literature shows that polarization diversity can provide another dimension which may be exploited to improve the performance in ground moving target indication (GMTI), compared with space & x2013;time adaptive processing (STAP). In this article, we report the multichannel synthetic aperture radar (SAR)-based GMTI (SAR-GMTI) experiment and its preliminary results with a N-SAR system which is an airborne quadrature-polarimetric (quad-pol) radar system. First, the joint polarization-space adaptive processing (JPolSAP) is performed in the image level, but two suboptimal versions of JPolSAP, where the polarimetric matched filter (PMF) vector and the full-one vector are exploited to substitute for the polarimetric steering vector, respectively, are evaluated since the polarimetric steering vector of the moving target is unknown precisely in practical applications. Then, considering the computational complexity and lack of secondary data in a inhomogeneous environment due to high degrees of freedom of the JPolSAP processor, two cascade processors are evaluated, including the polarization enhancement that uses PMF and noncoherence integration detection (NCID) technique. Furthermore, we utilize the polarization information to accomplish SAR terrain classification, and subsequently secondary data from the same scattering type clutter can be obtained for clutter suppression under the guidance of polarization classification results as a priori knowledge. Finally, the experimental results demonstrate that: 1) the suboptimal JPolSAP processor with PMF steering vector can effectively enhance GMTI performance about 13 dB (or even up to 5 dB) relative to the worst (or best) single-polarization (S-pol) processor case and has the best robustness compared with the one with full-one steering vector; 2) polarization enhancement using PMF also obtains a good output gain of polarization filter, especially for quad-pol enhancement, which gains up to 2 & x2013;3 dB with respect to the best output of S-pol processor, and the NCID technique can obtain good performance of moving-target detection; and 3) under the guidance of polarization classification results, the capability of clutter suppression can improve even up to 15 dB with respect to the one without classification.
机译:从开放文献中的许多研究表明,与空间&x2013相比,偏振分集可以提供可以利用的尺寸来提高地面移动目标指示(GMTI)的性能。时间自适应处理(STAP)。在本文中,我们报告了多通道合成孔径雷达(SAR)基本的GMTI(SAR-GMTI)实验及其具有N-SAR系统的初步结果,该系统是一种空气传播的正交 - 极性(四极管)雷达系统。首先,在图像电平中执行关节偏振空间自适应处理(JPOLSAP),而是利用偏振匹配滤波器(PMF)向量和全一个向量的JPOLSAP的两个次优版本以替代偏振转向向量分别评估移动目标的直率转向载体在实际应用中未知。然后,考虑到由于JPOLSAP处理器的高度的高度自由度,考虑到在不均匀环境中缺少非均匀环境中的次要数据,评估了两个级联处理器,包括使用PMF和非相干积分检测(NCID)技术的偏振增强。此外,我们利用偏振信息来完成SAR地形分类,随后可以在极化分类结果的引导下获得来自相同散射型杂波的次要数据,例如<斜体>先验知识。最后,实验结果表明:1)具有PMF转向载体的次优JPOLSAP处理器可以有效地相对于最差(或最佳)单极化(S-POL)有效增强约13dB(或甚至最多5dB)的GMTI性能处理器案例和具有全面转向载体的稳健性最佳鲁棒性; 2)使用PMF的偏振增强也获得偏振滤波器的良好输出增益,特别是对于四极管增强,其增益高达2&x2013; 3 dB相对于S-POL处理器的最佳输出,NCID技术可以获得移动目标检测的良好表现; 3)在偏振分类结果的指导下,杂波抑制的能力可以在没有分类的情况下均匀地提高到15dB。

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