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GLRT-based array receivers for the detection of a known signal with unknown parameters corrupted by noncircular interferences

机译:基于GLRT的阵列接收器,用于检测未知参数的已知信号,该未知信号被非圆形干扰破坏

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摘要

The detection of a known signal with unknown parameters in the presence of noise plus interferences (called total noise) whose covariance matrix is unknown is an important problem which has received much attention these last decades for applications such as radar, satellite localization or time acquisition in radio communications. However, most of the available receivers assume a second order (SO) circular (or proper) total noise and become suboptimal in the presence of SO noncircular (or improper) interferences, potentially present in the previous applications. The scarce available receivers which take the potential SO noncircularity of the total noise into account have been developed under the restrictive condition of a known signal with known parameters or under the assumption of a random signal. For this reason, following a generalized likelihood ratio test (GLRT) approach, the purpose of this paper is to introduce and to analyze the performance of different array receivers for the detection of a known signal, with different sets of unknown parameters, corrupted by an unknown noncircular total noise. To simplify the study, we limit the analysis to rectilinear known useful signals for which the baseband signal is real, which concerns many applications.
机译:在存在噪声加干扰(称为总噪声)且其协方差矩阵未知的情况下,检测未知参数的已知信号是一个重要问题,在最近几十年中,雷达,卫星定位或卫星时间获取等应用受到了广泛关注。无线电通讯。但是,大多数可用的接收器都假定为二阶(SO)圆形(或适当的)总噪声,并且在存在先前应用中可能存在的SO非圆形(或不适当)干扰的情况下变得次优。在具有已知参数的已知信号的限制条件下或在随机信号的假设下,已经开发了考虑总噪声的潜在SO非圆度的稀缺可用接收机。因此,本文采用广义似然比测试(GLRT)方法,旨在介绍并分析不同阵列接收机在检测已知信号时的性能,这些已知信号具有不同的未知参数集,并受到噪声的破坏。未知的非圆形总噪声。为了简化研究,我们将分析限于基带信号真实存在的直线已知有用信号,这涉及许多应用。

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