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Spectrum Sensing Using a Uniform Uncalibrated Linear Antenna Array for Cognitive Radios

机译:使用统一的未校准线性天线阵列进行认知无线电的频谱感测

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摘要

In this paper, we study the spectrum sensing problem when the sensing device is equipped with an uncalibrated multiantenna array. We consider an unknown Toeplitz structure for the covariance matrix of the signal of interest and unknown uncorrelated noise variances. We propose two new invariant constant false-alarm rate detectors with less computational cost than the generalized likelihood ratio test: 1) the Rao test and 2) a separating function estimation test (SFET). We calculate approximate expressions for the false-alarm and detection probabilities of the proposed Rao test-based detector. In addition, we derive the exact false-alarm probability of the proposed SFET for the case of two antennas. Moreover, we obtain an accurate approximation for the false-alarm probability of the proposed SFET for the general case using the method of moments. The accuracy of these expressions is validated by Monte-Carlo experiments. The simulation results show that the proposed detectors outperform state-of-the-art detectors.
机译:在本文中,我们研究了当感测设备配备未校准的多天线阵列时的频谱感测问题。对于感兴趣信号的协方差矩阵和未知的不相关噪声方差,我们考虑未知的Toeplitz结构。我们提出了两个新的不变常数误报率检测器,它们的计算成本比广义似然比检验低:1)Rao检验和2)分离函数估计检验(SFET)。我们为拟议的基于Rao测试的探测器的错误警报和探测概率计算近似表达式。此外,对于两个天线,我们得出了拟议的SFET的确切误报概率。此外,我们使用矩量法获得了在一般情况下拟议的SFET的误报警概率的准确近似值。这些表达式的准确性已通过蒙特卡洛实验验证。仿真结果表明,所提出的检测器性能优于最新的检测器。

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