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Spectrum Sensing technique for Cognitive Radio of multiple OFDM Signals based on Singular Value Decomposition

机译:基于奇异值分解的多OFDM信号认知无线电的频谱传感技术

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This work addresses the Spectrum Sensing (SS) problem in Cognitive Radio (CR) context, where the CR allows SUs (Secondary Users, i.e. unlicensed users) to access PUs (Primary Users, i.e. licensed frequency bands) through dynamic spectrum access in order to reduce spectrum scarcity problem in wireless communication. We propose in this communication a new multi-antenna spectrum sensing technique of multiple OFDM (Orthogonal Frequency Division Multiplexing) PU transmitters Signals using only singular value decomposition of second-order statistics. Furthermore, we derived closed-form of the false alarm, the detection probability and the threshold. Computer simulations show that the proposed SS technique can obtain good performances in low SNR values, which is a challenging issue in spectrum sensing. This technique is also compared with energy detector and Maximum-Minimum Eigenvalue detector (MME).
机译:该工作地解决了认知无线电(CR)上下文中的频谱感测(SS)问题,其中CR允许SUS(辅助用户,即未许可用户)通过动态频谱访问来访问PU(主要用户,即许可频带),以便减少无线通信中的频谱稀缺问题。我们在该通信中提出了一种新的多OFDM(正交频分复用)PU发射器信号的新的多天线频谱传感技术,其仅使用二阶统计的奇异值分解。此外,我们衍生出误报,检测概率和阈值的闭合形式。计算机模拟表明,所提出的SS技术可以在低SNR值中获得良好的性能,这是频谱感测中的一个具有挑战性的问题。该技术也与能量检测器和最大 - 最小特征值检测器(MME)进行了比较。

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