Improved radar detection using adaptive multiband polarization processing

R. Brown, Hong Wang
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引用次数: 1

Abstract

Two results concerning clutter estimation are presented. First, the use of frequency diversity improves adaptive detection performance to a greater extent than has been reported for optimum processors under an equal transmit energy constraint. Second, the MPGLR (multiband polarization generalized likelihood ratio) algorithm improves detection performance in the polarization domain and, in contrast to adaptive single-band processing under severely limited observation conditions, can approach the performance of the optimum processor. It is concluded that multiband processing improves performance by increasing the quantity of independent and identically distributed data vectors available for clutter estimation. A means of further improving detection of small targets is presented. This was accomplished by modifying the threshold of the MPGLR test according to the similarity of the maximum likelihood estimate of the target vector to the model assumption.<>
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采用自适应多波段极化处理改进雷达探测
给出了杂波估计的两个结果。首先,频率分集的使用在更大程度上提高了自适应检测性能,而不是在相同传输能量约束下的最佳处理器。其次,MPGLR(多波段极化广义似然比)算法提高了极化域的检测性能,与严重受限观测条件下的自适应单波段处理相比,可以接近最优处理器的性能。结果表明,多波段处理通过增加可用于杂波估计的独立且分布相同的数据向量的数量来提高性能。提出了一种进一步改进小目标检测的方法。这是通过根据目标向量的最大似然估计与模型假设的相似度修改MPGLR测试的阈值来实现的
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