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The CFAR adaptive subspace detector is a scale-invariant GLRT

机译:CFAR自适应子空间检测器是尺度不变的GLRT

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The constant false alarm rate (CFAR) matched subspace detector (CFAR MSD) is the uniformly most-powerful-invariant test and the generalized likelihood ratio test (GLRT) for detecting a target signal in noise whose covariance structure is known but whose level is unknown. Previously, the CFAR adaptive subspace detector (CFAR ASD), or adaptive coherence estimator (ACE), was proposed for detecting a target signal in noise whose covariance structure and level are both unknown and whose covariance structure is estimated with a sample covariance matrix based on training data. We show here that the CFAR ASD is GLRT when the test measurement is not constrained to have the same noise level as the training data, As a consequence, this GLRT is invariant to a more general scaling condition on the test and training data than the well-known GLRT of Kelly (1986).
机译:恒定误报率(CFAR)匹配子空间检测器(CFAR MSD)是用于检测噪声中目标信号的协方差结构已知但其电平未知的统一最强大不变性测试和广义似然比测试(GLRT) 。以前,提出了CFAR自适应子空间检测器(CFAR ASD)或自适应相干估计器(ACE),用于检测噪声中的目标信号,该目标信号的协方差结构和电平均未知,并且使用样本协方差矩阵基于训练数据。我们在这里表明,当测试测量不被限制为具有与训练数据相同的噪声水平时,CFAR ASD是GLRT。因此,与测试数据相比,该GLRT在测试和训练数据上具有更一般的缩放条件不变凯利的著名GLRT(1986)。

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