认知无线电噪声不确定条件下广义能量检测器的性能研究

S. Kalamkar, Adrish Banerjee
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引用次数: 29

摘要

在认知无线电中,频谱感知是一项基本任务,用于检测主用户。能量检测是一种流行的频谱传感技术。但在低信噪比和噪声不确定性条件下,能量检测器的检测性能会下降。本文研究了广义能量检测器(GED),它是在噪声不确定的情况下,用任意正幂运算p代替传统能量检测器(CED)中接收信号幅度的平方运算得到的。对于噪声不确定的最坏情况,我们分析了信噪比壁不依赖于p的值。我们进一步研究了均匀分布噪声不确定下,GED对不同p值的检测性能,并表明在噪声不确定下,CED是最好的ED。我们还发现,当噪声不确定度大于0.5 dB时,不同能谱之间的性能差距几乎消失,所有能谱的检测性能在所有p值下几乎相同。
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On the performance of generalized energy detector under noise uncertainty in cognitive radio
In cognitive radio, spectrum sensing is a fundamental task and is used to detect primary user. Energy detection is a popular spectrum sensing technique. But detection performance of energy detector (ED) deteriorates in low signal-to-noise ratio (SNR) conditions and under noise uncertainty. In this paper, we study generalized energy detector (GED), obtained by replacing squaring operation of amplitude of the received signal in conventional energy detector (CED) with an arbitrary positive power operation p under noise uncertainty. For the worst case of noise uncertainty we analytically show that SNR wall is not dependent on the value of p. We further investigate the detection performance of GED for different values of p under uniformly distributed noise uncertainty and show that CED is the best ED under noise uncertainty. We also show that at noise uncertainty greater than 0.5 dB, the performance gap between different EDs almost vanishes and the detection performances of all EDs almost become the same for all values of p.
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