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A Highly Efficient Spectrum Sensing Approach Based on Antenna Arrays Beamforming

机译:基于天线阵列波束形成的高效频谱传感方法

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In cognitive radio (CR), the sensitivity of the spectrum sensing (SS) algorithms depends mainly on several factors such as the receiver sensitivity, the antenna gain, the antenna efficiency and the SS algorithm itself. Researchers depend mainly on a single antenna element and sometimes on a uniform linear antenna (ULA) arrays to increase the system sensitivity. But actually the ULA suffers from the large side lobe level which in turn reduces the antenna gain. Furthermore, the separation between elements in the ULA is almost chosen to be half wavelength at the operating frequency which results in a dense array of close elements. If this separation increases slightly in order to reduce the mutual coupling between elements, the side lobes will increase and thus the realized gain is reduced more and more and as a consequence, the SNR will be reduced also which has a direct effect on the sensitivity of the system. In this paper, a low complexity and highly efficient SS technique based on antenna arrays beamforming and the generalized likelihood ratio test (GLRT) denoted as BF/GD is introduced. The proposed beamforming approach allows the utilization of the limited number of ULA elements and their corresponding RF chains to synthesize the desired radiation patterns of larger size antenna arrays for maximum gain realization. The desired pattern is realized by optimizing the excitation coefficients and inter-element spacing of the array. Consequently, the enhancement in the realized array gain will lead to a direct increase in the received signal-to-noise ratio (SNR) which significantly improves the sensitivity and the SS capability of the CR receiver without the need for extra hardware.
机译:在认知无线电(CR)中,频谱感测(SS)算法的灵敏度主要取决于诸如接收器灵敏度,天线增益,天线效率和SS算法本身的若干因素。研究人员主要依赖于单个天线元件,有时在均匀的线性天线(ULA)阵列上以提高系统灵敏度。但实际上ULA患有大的侧瓣水平,反过来又降低了天线增益。此外,ULA中的元件之间的分离几乎选择为处于工作频率的半波长,这导致密集的关闭元件阵列。如果该分离略微增加,以减少元件之间的相互耦合,则侧瓣将增加,因此,实现的增益越来越慢,因此,SNR也会减少,这也可以直接影响敏感性系统。在本文中,引入了基于天线阵列波束形成的低复杂性和高效的SS技术和表示为BF / GD的广义似然比测试(GLRT)。所提出的波束形成方法允许利用有限数量的ULA元件及其相应的RF链,以合成较大尺寸天线阵列的所需辐射图案以获得最大的增益实现​​。通过优化阵列的激励系数和元素间距来实现所需的图案。因此,实现的阵列增益中的增强将导致接收的信噪比(SNR)的直接增加,这显着提高了CR接收器的灵敏度和SS能力,而无需额外的硬件。

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