Research on sparsity of frequency modulated signal in fractional Fourier transform domain

Q3 Engineering 光电工程 Pub Date : 2020-11-20 DOI:10.12086/OEE.2020.190660
Wang Shuo, Guo Yong, Yang Lidong
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引用次数: 1

Abstract

Frequency modulated (FM) signal is extensively applied in sonar, radar, laser and emerging optical cross-research, its sparsity is a common basic issue for the sampling, denoising and compression of FM signal. This paper mainly studies the sparsity of FM signal in the fractional Fourier transform (FRFT) domain, and a maximum singular value method (MSVM) is proposed to estimate the compact FRFT domain of FM signal. This method uses the maximum singular value of amplitude spectrum of FM signal to measure the compact domain, and WOA is used to search the compact domain, which effectively improves the shortcomings of the existing methods. Compared with MNM and MACF, this method gives a sparser representation of FM signal in the FRFT domain, which has less number of significant amplitudes. Finally, the primary application of this method in the FM signal filtering is given.
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分数阶傅里叶变换域调频信号稀疏性研究
调频(FM)信号广泛应用于声纳、雷达、激光和新兴光学交叉研究,其稀疏性是调频信号采样、去噪和压缩的共同基础问题。本文主要研究了调频信号在分数阶傅里叶变换(FRFT)域中的稀疏性,提出了一种最大奇异值法(MSVM)来估计调频信号在分数阶傅里叶变换(FRFT)域中的紧凑性。该方法利用调频信号振幅谱的最大奇异值测量紧致域,利用WOA对紧致域进行搜索,有效地改进了现有方法的不足。与MNM和MACF相比,该方法在FRFT域中给出了更稀疏的调频信号表示,具有更少的有效幅度。最后给出了该方法在调频信号滤波中的初步应用。
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光电工程
光电工程 Engineering-Electrical and Electronic Engineering
CiteScore
2.00
自引率
0.00%
发文量
6622
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