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Electrocardiogram Signal Denoising Using Optimized Adaptive Hybrid Filter with Empirical Wavelet Transform

摘要Cardiovascular diseases are the world's leading cause of death;therefore cardiac health of the human heart has been a fascinating topic for decades.The electrocardiogram(ECG)signal is a comprehensive non-invasive method for determining cardiac health.Various health practitioners use the ECG signal to ascertain critical information about the human heart.In this article,swarm intelligence approaches are used in the biomed-ical signal processing sector to enhance adaptive hybrid filters and empirical wavelet transforms(EWTs).At first,the white Gaussian noise is added to the input ECG signal and then applied to the EWT.The ECG signals are denoised by the proposed adaptive hybrid filter.The honey badge optimization(HBO)algorithm is utilized to optimize the EWT window function and adaptive hybrid filter weight parameters.The proposed approach is simu-lated by MATLAB 2018a using the MIT-BIH dataset with white Gaussian,electromyogram and electrode motion artifact noises.A comparison of the HBO approach with recursive least square-based adaptive filter,multichannel least means square,and discrete wavelet transform methods has been done in order to show the efficiency of the proposed adaptive hybrid filter.The experimental results show that the HBO approach supported by EWT and adaptive hybrid filter can be employed efficiently for cardiovascular signal denoising.

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作者 BALASUBRAMANIAN S [1] NARUKA Mahaveer Singh [2] TEWARI Gaurav [3] 学术成果认领
作者单位 Department of Electronics and Communication Engineering,Maharishi University of Information Technology,Maharishi Vidya Mandir,Lucknow 226013,India [1] Department of Electronics and Communication Engineering,IEC College of Engineering and Technology,Greater Noida 201310,India [2] Department of Electrical Communication Engineering,School of Information and Communication Technology,Gautam Buddha University,Greater Noida 201310,India [3]
DOI 10.1007/s12204-023-2591-1
发布时间 2025-03-10(万方平台首次上网日期,不代表论文的发表时间)
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