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DIVERSITY TECHNIQUES FOR SPECTRUM SENSING IN FADING ENVIRONMENTS

机译:衰落环境中频谱感测的多样性技术

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A key feature of a cognitive radio (CR) is a reliable spectrum sensing technique which enables the CR to detect the so-called white spaces in the frequency band. This allows opportunistic access of the unlicensed (secondary) users to these white spaces without causing undue interference to licensed (primary) users. In many scenarios the CR may operate in a multipath fading environment where spectrum sensing must cope with the fading effects of the unknown primary signal. In this paper we first study the effects of multipath fading of the performance of the autocorrelation-based spectrum sensing algorithm in [1]. The results show that Rayleigh fading causes significant degradation in the detection and false alarm. This motivates us to investigate three diversity combining techniques, namely equal gain combining, selective combining, and equal gain correlation combining. For Rayleigh fading channels we evaluate the performance of these three techniques through simulation. The results show that for detection probabilities of interest (e.g., >.9), a system with a four-branch diversity achieves an SNR gain of more than 5dB over the no-diversity system that uses the same number of received signal samples.
机译:认知无线电(CR)的一个关键特征是一种可靠的频谱感测技术,使得CR能够检测频带中的所谓的白色空间。这允许将未经许可的(辅助)用户的机会访问这些白色空间,而不会导致对许可(主要)用户的过度干扰。在许多情况下,CR可以在多径衰落环境中运行,其中光谱感测必须应对未知主信号的衰落效果。本文首先研究了[1]中自相关基谱检测算法性能的多路径衰落的影响。结果表明,瑞利衰落导致检测和误报中的显着降解。这使我们能够研究三个分集合组合技术,即相等的增益组合,选择性组合和等于增益相关组合。对于瑞利褪色渠道,我们通过模拟评估这三种技术的性能。结果表明,对于感兴趣的检测概率(例如,> .9),具有四分支多样性的系统在使用相同数量的接收信号样本的无多样性系统上实现了超过5dB的SNR增益。

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