融合VMD优化和小波包分析的陶瓷检测信号降噪方法研究
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1. 华北理工大学人工智能学院 唐山 063210;2. 河北省工业智能感知重点实验室 唐山 063210

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TP2

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河北省省级科技计划资助(20327218D)


Research on denoising method of ceramic detection signal by integrating VMD optimization and wavelet packet analysis
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1.School of Artificial Intelligence, North China University of Science and Technology, Tangshan 063210, China; 2.Hebei Key Laboratory of Industrial Intelligent Perception, Tangshan 063210, China

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    摘要:

    针对陶瓷敲击检测信号含有噪声的问题,提出一种融合VMD优化与小波包分析(WPD)相结合的联合降噪方法。首先,应用能量的起始点检测准则提取实际信号的有效信息;其次,遗传算法(GA)选取VMD参数并自适应分解含噪信号;然后,计算各模态分量和原始信号的相关系数,将模态分量分为信号主分量和噪声分量;最后对信号主分量进行小波包分析,重构信息获取去噪后的信号。仿真实验证明:在分别加入10dB、20dB噪声时,该方法信噪比最高(23.81dB、24.75dB),均方误差最小(0.07、0.01), 与常用的去噪方法相比,去噪效果均有明显提升。陶瓷试件敲击检测信号测试实验表明,该方法能有效去除不同类型陶瓷试件敲击检测声音信号的噪声,具有良好的去噪性能。

    Abstract:

    To solve the problem of noise in the ceramic percussion detection signal, a denoising method combining VMD optimization and wavelet packet denoising (WPD) was proposed. Firstly, the energy starting point detection criterion extracted the effective information of the actual signal; Secondly, the genetic algorithm (GA) selected the VMD parameters to adaptively decomposed with the noise signal. Then, by calculating the correlation coefficient of each modal component with the original signal, they were divided into the main signal component and the noise component. Finally, the main signal component was de-noised by wavelet packet analysis. And the information is reconstructed to obtain the original signal. The simulation experiment proves that the method has the highest signal to noise ratio (23.81dB, 24.75dB) and the lowest mean square error (0.07, 0.01) when adding 10dB and 20dB noise, respectively, and the denoising effect is significantly improved compared with usual denoising methods. The test experiments of ceramic specimen percussion detection signals show that the method can remove the noise of different types of ceramic percussion detection signals effectively and has good denoising performance.

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刘利平,高世妍,孙 建.融合VMD优化和小波包分析的陶瓷检测信号降噪方法研究[J].电子测量技术,2022,45(18):32-40

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  • 在线发布日期: 2024-03-29
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