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Sensing threshold adaptation based on partial channel state information for energy detection in cognitive radio networks

机译:基于部分信道状态信息的感知阈值自适应,用于认知无线电网络中的能量检测

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The spectrum sensing methods have been incorporated in an essence to fulfill the sensing requirements associated with the detection of primary user in cognitive radio (CR) networks. Energy detection (ED) is the simplest and most commonly employed method to sense the licensed spectrum so that secondary user can make proficient use of it. The conventional energy detector has predefined value of sensing threshold due to which its targeted performance deteriorates considerably with noise uncertainty under severe fading environment at low SNR province. In this paper, we have proposed a novel approach for the adaptation of sensing threshold based on the imperfect knowledge of channel state information (CSI) so that it must be chosen approximately to meet tradeoff between probability of detection and false alarm probability under severe fading. The simulated results are presented to validate that proposed scheme is more robust against noise vagueness. We have compared the performance efficiency of proposed methodology with imperfect CSI, the conventional methodology with full CSI and conventional scheme with imperfect CSI. It has shown that the proposed scheme significantly outperforms the conventional schemes.
机译:频谱感测方法已被结合到本质上,以满足与认知无线电(CR)网络中主要用户的检测相关的感测要求。能量检测(ED)是检测许可频谱的最简单,最常用的方法,以便二级用户可以熟练地使用它。常规能量检测器具有预定义的感测阈值,由于该阈值的目标性能在低SNR省的严重衰落环境下由于噪声不确定性而大大降低。在本文中,我们基于信道状态信息(CSI)的不完善知识,提出了一种自适应阈值自适应的新方法,因此必须近似选择它以满足严重衰落下检测概率与虚警概率之间的折衷。给出仿真结果以验证所提出的方案对噪声模糊性更鲁棒。我们已经比较了具有不完善CSI的拟议方法,具有完整CSI的常规方法和具有不完善CSI的常规方案的性能效率。已经表明,所提出的方案明显优于常规方案。

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