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An unsigned autocorrelation based blind spectrum sensing approach for cognitive radio

机译:基于无符号自相关的认知无线电盲频谱感知方法

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A large part of unoccupied licensed spectrum can be vital for many applications and can be accessed opportunistically by Cognitive Radio. Cognitive Radio serves to be a framework for forthcoming 5G communication systems and therefore, extensive research is being carried out in its different domains. The task of sensing spectrum should be efficient and reliable to avoid interference between licensed and unlicensed user. A blind spectrum sensing scheme is proposed in this research which facilitates distinct discrimination between signal and noise components by using second order statistical characteristic. In this research, we have compared the results of our Autocorrelation based blind spectrum sensing scheme with Entropy based blind spectrum sensing scheme and Energy Detection scheme through Monte Carlo simulated graphs in AWGN channel. Simulations are carried out for a simple Frequency Modulated signal and 802.11a scenario. Threshold of our proposed scheme is independent of noise variance and thus, leads to optimal performance even in noisy environments than other two non-coherent methods with very few chances of false alarm.
机译:对于许多应用来说,很大一部分的未占用许可频谱可能是至关重要的,并且可以通过认知无线电机会访问。认知无线电是即将到来的5G通信系统的框架,因此,在其不同的域中进行广泛的研究。传感频谱的任务应高效可靠,以避免许可和未许可用户之间的干扰。在该研究中提出了一种盲光谱感测方案,其通过使用二阶统计特性促进信号和噪声分量之间的不同辨别。在本研究中,我们通过AWGN通道中的蒙特卡罗模拟图比较了基于熵的盲谱传感方案和能量检测方案的基于自相关的盲谱感测方案的结果。为简单的频率调制信号和802.11a场景进行仿真。我们所提出的计划的阈值与噪声方差无关,因此,即使在嘈杂的环境中也会导致最佳性能,而不是其他两个非相干方法,具有误报的可能性很少。

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