Underwater acoustic signal denoising based on sparse TQWT and wavelet thresholding

被引:0
|
作者
Yang, Jirui [1 ,2 ]
Yan, Shefeng [1 ,2 ]
Mao, Linlin [1 ]
Sui, Zeping [3 ]
Wang, Wei [1 ,2 ]
Zeng, Di [1 ,2 ]
机构
[1] Chinese Acad Sci, Inst Acoust, Beijing 100190, Peoples R China
[2] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[3] Queens Univ Belfast, Ctr Wireless Innovat CWI, Belfast BT3 9DT, North Ireland
关键词
Underwater acoustic signal; Denoising; Wavelet threshold; Tunable Q-factor wavelet transform (TQWT); ALGORITHMS;
D O I
10.1016/j.dsp.2024.104601
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The time -varying characteristics of the underwater environment lead to complicated background noise in collected signals. To reduce the negative impact of noise, this paper proposes the tunable Q -factor wavelet transform (TQWT)-basis pursuit (TQWT-BP)-based wavelet thresholding denoising schemes (TQWT-BP-WT). We commence by decomposing the collected signal into multiple subbands upon using TQWT-BP. Then, subbands are divided into signal subbands and noise subbands by applying the component identification criteria. The wavelet thresholding is invoked to denoise the signal subbands, while noise subbands are discarded. To classify the subbands, we design two criteria based on the coefficients threshold and the correlation coefficients, respectively. The coefficients threshold -based criterion determines the subband components by examining the number of coefficients that satisfy the threshold conditions. By comparing the correlation coefficients between the subbands and original signal, as well as between the subbands and the pre-denoised signal, the correlation coefficient -based method distinguishes the subbands, which avoids setting the criterion threshold. In addition, we investigate the influence of different normalized signal amplitudes decomposed by TQWT-BP, and the design of the normalized scale selection approach. Finally, practical simulation results are provided to verify the performance of our proposed schemes compared to other counterparts.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Adaptive wavelet thresholding based ultrasonic signal denoising
    College of Mechanical and Energy Engineering, Zhejiang University, Hangzhou 310027, China
    [J]. Zhejiang Daxue Xuebao (Gongxue Ban), 2007, 9 (1557-1560):
  • [2] Denoising Method for Shear Probe Signal Based on Wavelet Thresholding
    王树新
    肖学忠
    王延辉
    王子龙
    陈宝阔
    [J]. Transactions of Tianjin University, 2012, 18 (02) : 135 - 140
  • [3] Electrocardiogram signal denoising based on a new improved wavelet thresholding
    Han, Guoqiang
    Xu, Zhijun
    [J]. REVIEW OF SCIENTIFIC INSTRUMENTS, 2016, 87 (08):
  • [4] Research of signal denoising method based on an improved wavelet thresholding
    Tao, Hong-Yan
    Qin, Hua-Feng
    Yu, Cheng-Bo
    [J]. Yadian Yu Shengguang/Piezoelectrics and Acoustooptics, 2008, 30 (01): : 93 - 95
  • [5] Denoising Method for Shear Probe Signal Based on Wavelet Thresholding
    王树新
    肖学忠
    王延辉
    王子龙
    陈宝阔
    [J]. Transactions of Tianjin University, 2012, (02) : 135 - 140
  • [6] An adaptive thresholding method for the wavelet based denoising of phonocardiogram signal
    Jain, Puneet Kumar
    Tiwari, Anil Kumar
    [J]. BIOMEDICAL SIGNAL PROCESSING AND CONTROL, 2017, 38 : 388 - 399
  • [7] Ultrasonic Signal Denoising Based on a New Wavelet Thresholding Function
    Luo, Yan
    Xue, Wei
    Yu, Yunyun
    [J]. 2018 37TH CHINESE CONTROL CONFERENCE (CCC), 2018, : 4363 - 4367
  • [8] Denoising method for shear probe signal based on wavelet thresholding
    Wang, Shuxin
    Xiao, Xuezhong
    Wang, Yanhui
    Wang, Zilong
    Chen, Baokuo
    [J]. Transactions of Tianjin University, 2012, 18 (02) : 135 - 140
  • [9] Wavelet-based denoising of underwater acoustic signals
    Weiss, LG
    Dixon, TL
    [J]. JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1997, 101 (01): : 377 - 383
  • [10] Underwater target signal denoising based on vector wavelet
    Zhang, Zi-Li
    Sun, Jin-Cai
    [J]. Harbin Gongcheng Daxue Xuebao/Journal of Harbin Engineering University, 2004, 25 (SUPPL.): : 48 - 49