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Directional spectrum sensing for cognitive radio using ESPAR arrays with a single RF chain

机译:使用带有单个RF链的ESPAR阵列进行认知无线电的定向频谱感测

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In this paper, we propose to use the electronically steerable parasitic array radiator (ESPAR) antenna, which relies on a single radio frequency (RF) front end coupled with a number of parasitic elements to steer beams in prescribed directions in the angular domain on a time division basis, to identify the directional spectrum sensing opportunities for cognitive radios. In particular, we propose a two stage spectrum sensing: First ESPAR signal measurements from different directional beampatterns are fed as input to the generalized likelihood ratio test (GLRT) algorithm to detect the existence of primary user signals. If signal existence is detected by the GLRT, then the directional measurements are used to obtain the direction of arrival (DoA) using a multiple signal classification (MUSIC) algorithm. We show that the DoA estimation performance using the ESPAR is comparable to that of the traditional uniform linear array when the signal-to-noise ratio (SNR) is larger than −15dB.
机译:在本文中,我们建议使用电子可控寄生阵列辐射器(ESPAR)天线,该天线依赖于单个射频(RF)前端并结合了许多寄生元件,可将波束转向角域中规定方向的波束。时分的基础上,确定认知无线电的定向频谱感知机会。特别是,我们提出了一个两阶段频谱感测:首先,将来自不同方向性波束图案的ESPAR信号测量值作为输入输入到通用似然比测试(GLRT)算法中,以检测主要用户信号的存在。如果GLRT检测到信号存在,则使用多信号分类(MUSIC)算法使用方向性测量来获得到达方向(DoA)。我们显示,当信噪比(SNR)大于-15dB时,使用ESPAR的DoA估计性能可与传统的均匀线性阵列相媲美。

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