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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Data quantization effects in CFAR signal detection
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Data quantization effects in CFAR signal detection

机译:CFAR信号检测中的数据量化效应

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摘要

In this paper, we investigate data quantization effects in constant false alarm rate (CFAR) signal detection. Exponential distribution for the input data and uniform quantization are assumed for the CFAR detector analysis. Such assumptions are valid in the case of radar for a Swerling I target in Gaussian clutter plus noise and a receiver with analog square-law detection followed by analog-to-digital (A/D) conversion. False alarm and detection probabilities of the cell averaging (CA) and order statistic (OS) CFAR detectors operating on quantized observations are analytically determined. In homogeneous backgrounds with 15 dB clutter power fluctuations, we show analytically that a 12-bit uniform quantizer is sufficient to achieve false alarm rate invariance. Detector performance characteristics in nonhomogeneous backgrounds, due to regions of clutter power transitions and multiple interfering targets, are also presented and detailed comparisons are given.
机译:在本文中,我们研究了恒定误报率(CFAR)信号检测中的数据量化效果。对于CFAR检测器分析,假定了输入数据的指数分布和均匀量化。这样的假设在雷达对高斯杂波加噪声的Swerling I目标和具有模拟平方律检测并随后进行模数(A / D)转换的接收机的情况下是有效的。分析确定了基于量化观测的像元平均(CA)和阶次统计(OS)CFAR检测器的虚警和检测概率。在杂波功率波动为15 dB的均匀背景下,我们通过分析表明,使用12位均匀量化器足以实现误报率不变性。还介绍了由于杂散功率转换区域和多个干扰目标而导致的非均匀背景下的检测器性能特征,并进行了详细的比较。

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