New results on integrated adaptive filtering and CFAR processing

H. Wang, L. Cai
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引用次数: 0

Abstract

The authors examine the detection performance of the GLR (generalized likelihood ratio) algorithm in nonhomogeneous/nonstationary clutter environments which lead to nonidentical distribution of secondary (training) data. For two common types of nonhomogeneity, i.e., the so-called signal contamination and clutter edge, the asymptotic detection performance is derived and compared to simulation. These asymptotic results are relatively simple to use and predict the GLR performance in nonhomogeneous environments quite well. The GLR performance loss due to the nonhomogeneity is also evaluated. It is found that the generalized angle between the desired and contaminating signals plays a very important role in the study of the effect of the signal contamination. It is also found that the performance degradation due to the clutter edge relies largely on the clutter spectrum spread and target-clutter Doppler separation.<>
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综合自适应滤波和CFAR处理的新成果
本文研究了广义似然比(GLR)算法在非均匀/非平稳杂波环境下的检测性能,这种环境会导致二次(训练)数据的分布不相同。对于两种常见的非均匀性,即所谓的信号污染和杂波边缘,推导了渐近检测性能,并与仿真进行了比较。这些渐近结果使用起来相对简单,并且可以很好地预测非均匀环境下的GLR性能。对非均匀性导致的GLR性能损失进行了评价。研究发现,期望信号与污染信号之间的广义夹角在信号污染效应的研究中起着非常重要的作用。杂波边缘对系统性能的影响很大程度上取决于杂波频谱扩展和目标-杂波多普勒分离。
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