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Multiantenna GLR Detection of Rank-One Signals With Known Power Spectrum in White Noise With Unknown Spatial Correlation

机译:空间相关性未知的白噪声中具有已知功率谱的秩一信号的多天线GLR检测

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摘要

Multiple-antenna detection of a Gaussian signal with spatial rank one in temporally white Gaussian noise with arbitrary and unknown spatial covariance is considered. This is motivated by spectrum sensing problems in the context of dynamic spectrum access in which several secondary networks coexist but do not cooperate, creating a background of spatially correlated broadband interference. When the temporal correlation of the signal of interest is assumed known up to a scale factor, the corresponding Generalized Likelihood Ratio Test is shown to yield a scalar optimization problem. Closed-form expressions of the test are obtained for the general signal spectrum case in the low signal-to-noise ratio (SNR) regime, as well as for signals with binary-valued power spectrum in arbitrary SNR. The two resulting detectors turn out to be equivalent. An asymptotic approximation to the test distribution for the low-SNR regime is derived, closely matching empirical results from spectrum sensing simulation experiments.
机译:考虑在具有任意和未知空间协方差的时间白高斯噪声中对空间秩为1的高斯信号进行多天线检测。这是由动态频谱访问的情况下频谱感测问题引起的,在动态频谱访问中,多个辅助网络共存但不合作,从而形成了空间相关的宽带干扰的背景。当假设感兴趣的信号的时间相关性已知到比例因子时,相应的广义似然比测试就会显示出标量优化问题。对于低信噪比(SNR)情况下的一般信号频谱情况,以及任意SNR中具有二进制值功率谱的信号,均获得了测试的闭式表达式。结果是两个检测器是等效的。得出了针对低SNR方案的测试分布的渐近近似,与频谱感测模拟实验的经验结果非常匹配。

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