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Spectrum Sensing for Cognitive Radios Based on Directional Statistics of Polarization Vectors

机译:基于极化矢量方向统计的认知无线电频谱感知

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摘要

In this paper, we propose a new blind spectrum sensing method based on the polarization characteristic of the received signal, which is completely represented by the orientation of a polarization vector. We first discuss a spectrum sensing model based on polarization vectors' orientation. Then we develop the directional statistics of polarization vectors that contain both the signal and noise or noise only. The distinctive difference between the two statistics can be used to decide whether the primary signal exists or not. Based on this, by using the well-known generalized likelihood ratio test (GLRT) paradigm, a new polarization sensing algorithm GLRT-polarization vector (GLRT-PV) is proposed. By applying directional statistics, we derive closed-form expressions for the probability of false alarm and the probability of detection under both dual-polarized additive white Gaussian noise (AWGN) and Rayleigh-fading channels. Our numerical simulation and experimental results show that the proposed method exhibits better performance than other existing methods in the case of unknown primary transmitter polarization and/or presence of noise power uncertainty.
机译:在本文中,我们基于接收信号的偏振特性提出了一种新的盲谱传感方法,该特性完全由偏振矢量的方向表示。我们首先讨论基于极化矢量方向的频谱感测模型。然后,我们开发偏振矢量的方向统计,该矢量既包含信号又包含噪声或仅包含噪声。两种统计数据之间的显着差异可用于确定主要信号是否存在。在此基础上,通过使用众所周知的广义似然比测试(GLRT)范式,提出了一种新的极化传感算法GLRT-极化向量(GLRT-PV)。通过应用方向统计,我们得出了双极化加性高斯白噪声(AWGN)和瑞利衰落信道下的虚警概率和检测概率的闭式表达式。我们的数值模拟和实验结果表明,在未知的主发射机极化和/或存在噪声功率不确定性的情况下,所提出的方法表现出比其他现有方法更好的性能。

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