带宽约束下基于局部MTM-SVD的SIMO OFDM认知无线电频谱感知

O. A. Alghamdi, M. Abu-Rgheff
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引用次数: 9

摘要

本文提出在基于ofdm的认知无线电(CR)系统中,使用局部多锥奇异值分解(local - mtm - svd)进行频谱感知。该技术通过在主发射机(PR)处使用单输入,在不同的CR节点(传感器)处使用多输出天线系统(SIMO),增强了频谱感知局域性。基于硬合作,在CR基站使用OR规则声明全局决策。该技术减少了反馈信道的带宽,并获得了强大的频谱感知技术;使用MTM-SVD。通过软件仿真和理论分析验证了我们提出的技术。结果表明,无论在AWGN环境还是瑞利平坦衰落环境下,与仅使用MTM或单天线周期图相比,检测概率都有显著提高。我们发现,当生成的奇异值总数为4时,该技术中有用的奇异值平方数等于或小于2,并且在相同条件下,仅MTM技术倾向于提供与使用单天线的Local-MTM-SVD技术相同的性能。决策阈值水平的选择取决于我们在决策统计中使用的奇异值平方的数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Local MTM-SVD based spectrum sensing in SIMO OFDM cognitive radio under bandwidth constraint
In this paper, we propose using local multitaper-singular value decomposition (Local-MTM-SVD) for spectrum sensing in OFDM-based cognitive radio (CR) systems. The spectrum sensing locality in this technique is enhanced by using single input at the primary (PR) transmitter and multi output antenna system (SIMO) at the different CR nodes (sensors). The global decision is declared using the OR rule at the CR basestation based on hard cooperation. This technique reduces the bandwidth of the feedback channel, and for powerful spectrum sensing technique; the MTM-SVD is used. Our proposed technique is examined using software simulation and theoretical analysis. The results show that there is a significant improvement in the probability of detection compared to using MTM only, or using the periodogram with single antenna in both AWGN and Rayleigh flat fading environments. We found the number of singular value squares that are useful in the technique is equal to or smaller than 2 when the total number of generated singular values is 4, and the MTM only technique tends to offer same performance as the Local-MTM-SVD technique using single antenna in the same conditions. The choice of the decision threshold level depends on the number of singular value squares which we used in the decision statistic.
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