A Novel Weak Signal Detector Based on Power Spectrum Entropy Under Low SNR

Zekun Hong, Yanyun Xu
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引用次数: 2

Abstract

Aiming at the problem of spectrum monitoring of low-power wideband signals in complex electromagnetic environments, this paper proposes a double threshold weak signal detector based on the information entropy of the frequency-domain power spectrum. Based on the theoretical model of information entropy, the signal's power spectrum entropy is used as the test statistic to construct a double decision threshold, which realizes the blind detection of the hidden low-power weak signal under the strong noise interference. Simulation results show that when the received signal-to-noise ratio is -16dB, the signal detection rate is greater than 80%, which is better than other traditional algorithms. Experiments in the scene of non-cooperative spectrum monitoring further prove the effectiveness of this method in practical application.
低信噪比下基于功率谱熵的微弱信号检测器
针对复杂电磁环境下低功率宽带信号的频谱监测问题,提出了一种基于频域功率谱信息熵的双阈值微弱信号检测器。在信息熵理论模型的基础上,以信号的功率谱熵作为检验统计量,构造双判决阈值,实现了在强噪声干扰下对隐藏的低功率弱信号的盲检测。仿真结果表明,当接收信噪比为-16dB时,信号检测率大于80%,优于其他传统算法。在非合作频谱监测场景下的实验进一步证明了该方法在实际应用中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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