Multiple primary user spectrum sensing for unknown noise statistics

Lu Wei, O. Tirkkonen
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引用次数: 3

Abstract

Multi-antenna spectrum sensing algorithms for cognitive radio are receiving a lot of attention recently. In this paper, we consider multi-antenna detection when the noise covariance matrix is assumed to be arbitrary and unknown. The studies leading to this paper have been motivated by the existence but typically unknown noise correlation in practice. A multiple primary user detector, derived from the generalized likelihood ratio criterion, is analyzed in such a scenario. We calculate the exact moments of the test statistics involved, which lead to a simple and accurate analytical formula for the false alarm probability. The result is obtained by utilizing tools from multivariate analysis as well as moment based approximations. Simulations are conducted to examine accuracy of the derived result, with the achieved accuracy being reasonably good. From the considered simulation settings, performance gain over existing detection algorithms is observed in scenarios with arbitrary but unknown noise correlation and multiple primary users.
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多主用户频谱感知未知噪声统计
认知无线电的多天线频谱感知算法近年来受到广泛关注。本文考虑了噪声协方差矩阵为任意未知时的多天线检测问题。在实践中存在但通常未知的噪声相关性促使了本文的研究。在这种情况下,分析了基于广义似然比准则的多主用户检测器。我们计算了所涉及的测试统计量的精确矩,从而得到了一个简单而准确的虚警概率分析公式。结果是利用多变量分析工具和基于矩的近似得到的。通过仿真验证了所得结果的准确性,得到了较好的精度。从考虑的模拟设置来看,在具有任意但未知的噪声相关性和多个主用户的情况下,可以观察到优于现有检测算法的性能增益。
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