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Effects of Noise Power Estimation on Energy Detection for Cognitive Radio Applications

机译:噪声功率估计对认知无线电应用中能量检测的影响

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摘要

An uncertain knowledge of the noise power level can severely limit the energy detector (ED) spectrum sensing capability. In some situations this uncertainty can cause signal-to-noise ratio (SNR) penalties or even the rise of the SNR wall phenomenon. In this paper we analyze the performance of the ED with estimated noise power (ENP), addressing the threshold design and giving the conditions for the existence of the SNR wall. We derive analytical expressions for the design curves (SNR vs. observation time for a target performance) for the ENP-ED. Then we apply our analysis to cognitive radio (CR) systems where energy detection is used for fast sensing. For example it is shown that the SNR penalty with respect to ideal ED is of 5 log_{10}(frac{1+λ}{λ}) dB, when the time dedicated to noise power estimation is a multiple λ of the ED observation interval.
机译:对噪声功率水平的不确定了解会严重限制能量检测器(ED)频谱感测能力。在某些情况下,这种不确定性可能导致信噪比(SNR)损失,甚至会导致SNR壁现象的上升。在本文中,我们用估计的噪声功率(ENP)分析了ED的性能,解决了阈值设计问题,并给出了存在SNR壁的条件。我们得出ENP-ED的设计曲线的解析表达式(SNR与目标性能的观察时间)。然后,我们将分析应用于认知无线电(CR)系统,其中能量检测用于快速感应。例如,当专用于噪声功率估计的时间是ED观测值的倍数λ时,表明相对于理想ED的SNR损失为5 log_ {10}(frac {1 +λ} {λ})dB间隔。

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