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Robust spectrum sensing in the presence of carrier frequency offset and phase noise for cognitive radio

机译:存在载波频率偏移和认知无线电相位噪声的鲁棒光谱感测

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In this paper we examine the spectrum detection performance of a matched filter (MF) in the presence of two system impairments: i.e., carrier frequency offset (CFO) and phase noise (PN). The results show that in the presence of CFO, the performance of the MF may be inferior to an energy detector (ED). So we propose three spectrum sensing techniques that are robust to CFO and outperform the MF over a certain range of CFO values. These three approaches are: the block-coherent detector (BLCD) with a suboptimal number (N/2) of blocks; the second-order matched filter-I (SOMF-I); and the secondorder matched filter-II (SOMF-II), which is a modified version of SOMF-I. We show that the SOMF-II structure has the best detection performance of these three methods (in the presence of CFO). Finally, we examine the impact of PN on the detection ability of MF and SOMF-I. We will show that while PN will have some effect on the MF performance it does not impair the operation of SOMF-I.
机译:在本文中,我们在存在两个系统损伤时检查匹配过滤器(MF)的频谱检测性能:即载波频率偏移(CFO)和相位噪声(PN)。结果表明,在CFO的存在下,MF的性能可以不如能量检测器(ED)。因此,我们提出了三种频谱感测技术,对CFO具有鲁棒,并且优越在一定范围的CFO值范围内的MF。这三种方法是:块相干探测器(BLCD)具有嵌段的次优数(N / 2);二阶匹配过滤器-i(Somf-i);和二阶匹配的过滤器-II(Somf-II),这是Somf-i的修改版本。我们表明Somf-II结构具有这三种方法的最佳检测性能(在CFO存在下)。最后,我们研究了PN对MF和SOMF-I的检测能力的影响。我们将显示,虽然PN对MF性能有一些影响,但它不会损害Somf-i的操作。

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