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A multichannel auto-regressive GLR detector for airborne phased array radar applications

机译:用于机载相控阵雷达应用的多通道自回归GLR检测器

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This paper considers the Gaussian multichannel binary detection problem. A multichannel generalized likelihood ratio (GLR) is presented using a model-based approach where the signal and its amplitude are known and additive noise is characterized by autoregressive (AR) vector processes which can be a suitable model for ground clutter in most scenarios involving airborne surveillance phased array radar. The detector can use secondary vectors to improve its performance. Although, in our model, the amplitude of the signal must be known, but according to its excellent performance, an approximation of the GLR on the amplitude is also presented. The detector performance in various conditions and the result of comparison with Kelly's GLR and adaptive matched filter (AMF) detectors is presented by computer simulations.
机译:本文考虑了高斯多通道二进制检测问题。使用基于模型的方法来表示多通道广义似然比(GLR),其中信号及其幅度是已知的,附加噪声的特征在于自回归(AR)矢量过程,在大多数涉及机载场景中,该过程可以作为地面杂波的合适模型监视相控阵雷达。检测器可以使用辅助向量来改善其性能。尽管在我们的模型中,必须知道信号的幅度,但是根据其出色的性能,还给出了GLR在幅度上的近似值。通过计算机仿真显示了在各种条件下的探测器性能以及与凯利(Kelly)GLR和自适应匹配滤波器(AMF)探测器的比较结果。

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