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Cell-averaging CFAR gain in spatially correlated K-distributed clutter

机译:空间相关K分布杂波中的单元平均CFAR增益

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摘要

The detection performance of a cell-averaging CFAR detector is analysed for spatially correlated K-distributed clutter. In thermal noise or uniform clutter, the performance of the cell-averaging CFAR can be compared with that of the ideal fixed threshold, but with an associated 'CFAR loss', quantified by the increase in average signal-to-clutter ratio required to achieve a given probability of detection and probability of false alarm. In some types of clutter, knowledge of the overall amplitude distribution alone is not sufficient to assess the performance of a cell-averaging CFAR. In particular, sea clutter may exhibit significant spatial correlation, often associated with the sea swell. In such spatially varying clutter, the cell-averaging CFAR may be able to follow the local fluctuations, giving a considerable improvement in performance compared to the 'ideal' fixed threshold. This is quantified as a 'CFAR gain' with the limit of such improvement given by the performance of the 'ideal CFAR' detector. The CFAR gain or loss is illustrated in different clutter conditions for a range of cell-averager configurations. It is shown that significant CFAR gain, compared with the commonly accepted CFAR loss, can be achieved in some circumstances.
机译:分析了针对空间相关的K分布杂波的平均单元CFAR检测器的检测性能。在热噪声或杂波均匀的情况下,可以将小区平均CFAR的性能与理想固定阈值的性能进行比较,但要结合相关的“ CFAR损耗”,以达到所需的平均信噪比的增加来量化给定的检测概率和错误警报概率。在某些类型的杂波中,仅了解整体幅度分布不足以评估小区平均CFAR的性能。特别地,海杂波可能表现出显着的空间相关性,通常与海浪相关。在这种空间变化的杂波中,小区平均CFAR可能能够跟随局部波动,与“理想”的固定阈值相比,性能得到了很大的改善。这被量化为“ CFAR增益”,其极限由“理想CFAR”检测器的性能给出。对于一系列单元平均配置,在不同的杂波条件下显示了CFAR增益或损耗。结果表明,在某些情况下,与公认的CFAR损耗相比,可以获得显着的CFAR增益。

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