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Spectrum sensing technique of OFDM signal under noise uncertainty based on Mean Ambiguity Function for Cognitive Radio

机译:基于平均歧义函数的认知无线电噪声不确定下的OFDM信号频谱感知技术

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摘要

In this paper, we consider the Spectrum Sensing (SS) problem in Cognitive Radio (CR). SS is an important task and one of the main functions of CR, as it has the ability to detect the presence/absence of a Primary User (i.e., PU, licensed user) signal in order to allow the Secondary User (i.e., SU, unlicensed user) to access PU frequency band using CR. The common purpose of all SS techniques is performing an efficient utilization of the available radio spectrum, thus reducing the spectrum scarcity problem. In this paper, we propose a new SS technique of OFDM (Orthogonal Frequency Division Multiplexing) signal based on Mean Ambiguity Function (MAF). Furthermore, we exploited some specific algebraic properties of OFDM signal to propose a test statistics for the detector. The theoretical expressions of the OFDM signal MAF and threshold are also derived. The calculation of threshold expression is based on the Probability Distribution Function (PDF) of the proposed test statistics. In addition, we studied the effect of different parameters, e.g., low SNR (Signal to Noise) values, noise uncertainty and number of OFDM symbol on the detection performance of the proposed detector. Moreover, the obtained simulations results are compared to the Energy Detector (Urkowitz, 1967) and a recent spectrum sensing technique of OFDM signal; DC - OFDM detector (Shi et al., 2015). Furthermore, the proposed detector is also implemented and tested using Universal Software Radio Peripheral ( USRP) devices. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,我们考虑了认知无线电(CR)中的频谱感知(SS)问题。 SS是CR的一项重要任务,也是其主要功能之一,因为它具有检测主要用户(即PU,许可用户)信号存在/不存在的能力,从而允许次要用户(即SU,非授权用户)使用CR访问PU频段。所有SS技术的共同目的是有效利用可用的无线电频谱,从而减少频谱稀缺问题。在本文中,我们提出了一种基于平均歧义函数(MAF)的OFDM(正交频分复用)信号的SS技术。此外,我们利用OFDM信号的某些特定代数性质为检测器提出了测试统计数据。还推导了OFDM信号MAF和阈值的理论表达式。阈值表达式的计算基于建议的测试统计信息的概率分布函数(PDF)。此外,我们研究了不同参数(例如低SNR(信噪比)值,噪声不确定性和OFDM符号数量)对所提出的检测器的检测性能的影响。此外,将获得的仿真结果与能量检测器(Urkowitz,1967)和最新的OFDM信号频谱检测技术进行了比较。 DC-OFDM检测器(Shi et al。,2015)。此外,还使用通用软件无线电外围设备(USRP)设备来实现和测试所提出的检测器。 (C)2019 Elsevier B.V.保留所有权利。

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