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Towards the use of learned dictionaries and compressive sensing in wideband signal detection

机译:努力在宽带信号检测中使用学到的词典和压缩感测

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Detection and estimation of wideband radio frequency signals are major functions of persistent surveillance systems and rely heavily on high sampling rates dictated by the Nyquist-Shannon sampling theorem. In this paper we address the problem of detecting wideband signals in the presence of AWGN and interference with a fraction of the measurements produced by traditional sampling protocols. Our approach uses learned dictionaries in order to work with less restriction on the class of signals to be analyzed and Compressive Sensing (CS) to reduce the number of samples required to process said signals. We apply the K-SVD technique to design a dictionary, reconstruct using a recently developed signal-centric reconstruction algorithm (SSCoSaMP), then use maximum likelihood estimation to detect and estimate the carrier frequencies of wideband RF signals while assuming no prior knowledge of the frequency location. This solution relaxes the assumption that signals are sparse in a fixed/predetermined orthonormal basis and reduces the number of measurements required to detect wideband signals all while having comparable error performance to traditional detection schemes. Simulations of frequency hopping signals corrupted by additive noise and chirp interference are presented. Other experimental results are included to illustrate the flexibility of learned dictionaries whereby the roles of the chirps and the sinusoids are reversed.
机译:宽带射频信号的检测和估计是持续监视系统的主要功能,并且在很大程度上依赖于Nyquist-Shannon采样定理所规定的高采样率。在本文中,我们解决了在存在AWGN的情况下检测宽带信号以及使用传统采样协议产生的一部分测量结果产生干扰的问题。我们的方法使用学习的字典,以便对要分析的信号类别进行较少的限制,并使用压缩感测(CS)来减少处理所述信号所需的样本数量。我们使用K-SVD技术设计字典,使用最近开发的以信号为中心的重建算法(SSCoSaMP)进行重建,然后使用最大似然估计来检测和估计宽带RF信号的载波频率,同时无需事先了解频率位置。该解决方案放宽了信号在固定/预定正交基础上稀疏的假设,并减少了检测宽带信号所需的测量次数,同时具有与传统检测方案相当的错误性能。提出了由加性噪声和线性调频干扰破坏的跳频信号的仿真。其他实验结果也包括在内,以说明所学字典的灵活性,从而whereby和正弦波的作用相反。

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