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A New Spectrum Sensing Method with Low SNR under Laplace Noise

机译:拉普拉斯噪声下SNR的新谱检测方法

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Aiming at the existing spectrum detection technology, under the condition of low SNR, especially under the background of non-Gaussian noise, the detection performance is low and the detection time is long. This paper fully combines the advantages of energy detection and sequential detection. According to the characteristics of non-Gaussian noise, a new method of spectrum sensing with low SNR under Laplace noise is proposed. For the proposed method, we first divide the received signal equidistantly in the background of Laplace noise, and then use the sequential detection method to achieve a predetermined good detection probability. The simulation results verify the correctness of our theoretical derivation and show that the proposed scheme is correct. Compared with energy detection under Laplacian noise, this method has the advantages of short detection time, small sample size, small influence of noise uncertainty, and good performance under low SNR. In addition, the proposed method can effectively counter the influence of fading channels on detection performance.
机译:针对现有的频谱检测技术,在低SNR的条件下,特别是在非高斯噪声的背景下,检测性能低,检测时间很长。本文完全结合了能量检测和顺序检测的优点。根据非高斯噪声的特点,提出了一种新的Laplace噪声下的SNR光谱感测方法。对于所提出的方法,我们首先在拉普拉斯噪声的背景中等地将接收的信号分开,然后使用顺序检测方法来实现预定的良好检测概率。仿真结果验证了我们理论推导的正确性,并表明所提出的方案是正确的。与Laplacian噪声下的能量检测相比,该方法具有短检测时间,小样本尺寸小,噪声不确定性的影响小,低SNR下的性能良好。此外,该方法可以有效地对抗衰落通道对检测性能的影响。

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