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Polarimetric subspace target detector for SAR data based on the Huynen dihedral model

机译:基于Huynen二面模型的SAR数据极化子空间目标检测器。

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Abstract: Two new polarimetric subspace target detectors are developed based on a dihedral signal model for bright peaks within a spatially extended target signature. The first is a coherent dihedral target detector based on the exact Huynen model for a dihedral. The second is a noncoherent dihedral target detector based on the Huynen model with an extra unknown phase term. Expressions for these polarimetric subspace target detectors are developed for both additive Gaussian clutter and more general additive spherically invariant random vector clutter including the K-distribution. For the case of Gaussian clutter with unknown clutter parameters, constant false alarm rate implementations of these polarimetric subspace target detectors are developed. The performance of these dihedral detectors is demonstrated with real millimeter-wave fully polarimetric SAR data. The coherent dihedral detector which is developed with a more accurate description of a dihedral offers no performance advantage over the noncoherent dihedral detector which is computationally more attractive. The dihedral detectors do a better job of separating a set of tactical military targets from natural clutter compared to a detector that assumes no knowledge about the polarimetric structure of the target signal. !27
机译:摘要:两个新的Polariemetric子空间目标探测器是基于在空间扩展的目标签名中的明亮峰值的二面的信号模型开发的。首先是基于Dihedral的精确Huynen模型的相干二对角靶检测器。第二种是基于Huynen模型的非相干二偏的目标探测器,具有额外的未知相位术语。用于这些偏振子空间目标检测器的表达式用于添加高斯杂波和更通用的添加剂球形不变随机向量杂波,包括K分布。对于具有未知杂波参数的高斯杂波的情况,开发了这些偏振子空间目标检测器的恒定误报率实现。使用真正的毫米波完全偏振的SAR数据进行了这些二面探测器的性能。具有更准确的Dihedral描述的相干二对型检测器没有在非组织Dihedral检测器上提供性能优势,这是计算地更具吸引力的。与检测器相比,Dihedral探测器可以更好地将一组战术军事目标与自然杂波分开,该检测器不承担目标信号的偏振结构的知识。 !27

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