Application of Boundary Local Feature Scale Adaptive Matching Extension EMD Endpoint Effect Suppression Method in Blasting Seismic Wave Signal Processing

The intrinsic endpoint effect of empirical mode decomposition (EMD) will lead to serious divergence of the intrinsic mode function (IMF) at the endpoint, which will lead to the distortion of IMF and affect the decomposition accuracy of EMD. In view of this phenomenon, an EMD endpoint effect suppress...

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Main Authors: Jing Wu, Li Wu, Miao Sun, Ya-ni Lu, Yan-hua Han
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/2804539
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spelling doaj-e6add909bfc3460794863c89a6330b642021-08-23T01:32:32ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/2804539Application of Boundary Local Feature Scale Adaptive Matching Extension EMD Endpoint Effect Suppression Method in Blasting Seismic Wave Signal ProcessingJing Wu0Li Wu1Miao Sun2Ya-ni Lu3Yan-hua Han4Faculty of Civil EngineeringFaculty of EngineeringCollege of Environment and EngineeringFaculty of Civil EngineeringFaculty of Civil EngineeringThe intrinsic endpoint effect of empirical mode decomposition (EMD) will lead to serious divergence of the intrinsic mode function (IMF) at the endpoint, which will lead to the distortion of IMF and affect the decomposition accuracy of EMD. In view of this phenomenon, an EMD endpoint effect suppression method based on boundary local feature scale adaptive matching extension was proposed. This method can consider both the change trend of the signal at the endpoint and the change rule of the signal inside. The simulation results showed that the proposed method had better suppression effect on the intrinsic endpoint effect of EMD than the traditional EMD endpoint effect suppression method and achieved high-precision IMF. The endpoint effect suppression method of EMD based on boundary local feature scale adaptive matching extension was used to process the actual blasting seismic signal. The decomposition results showed that the method can effectively suppress the endpoint effect of EMD of blasting seismic signal and are helpful to extract the detailed characteristic parameters of blasting seismic signal.http://dx.doi.org/10.1155/2021/2804539
collection DOAJ
language English
format Article
sources DOAJ
author Jing Wu
Li Wu
Miao Sun
Ya-ni Lu
Yan-hua Han
spellingShingle Jing Wu
Li Wu
Miao Sun
Ya-ni Lu
Yan-hua Han
Application of Boundary Local Feature Scale Adaptive Matching Extension EMD Endpoint Effect Suppression Method in Blasting Seismic Wave Signal Processing
Shock and Vibration
author_facet Jing Wu
Li Wu
Miao Sun
Ya-ni Lu
Yan-hua Han
author_sort Jing Wu
title Application of Boundary Local Feature Scale Adaptive Matching Extension EMD Endpoint Effect Suppression Method in Blasting Seismic Wave Signal Processing
title_short Application of Boundary Local Feature Scale Adaptive Matching Extension EMD Endpoint Effect Suppression Method in Blasting Seismic Wave Signal Processing
title_full Application of Boundary Local Feature Scale Adaptive Matching Extension EMD Endpoint Effect Suppression Method in Blasting Seismic Wave Signal Processing
title_fullStr Application of Boundary Local Feature Scale Adaptive Matching Extension EMD Endpoint Effect Suppression Method in Blasting Seismic Wave Signal Processing
title_full_unstemmed Application of Boundary Local Feature Scale Adaptive Matching Extension EMD Endpoint Effect Suppression Method in Blasting Seismic Wave Signal Processing
title_sort application of boundary local feature scale adaptive matching extension emd endpoint effect suppression method in blasting seismic wave signal processing
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description The intrinsic endpoint effect of empirical mode decomposition (EMD) will lead to serious divergence of the intrinsic mode function (IMF) at the endpoint, which will lead to the distortion of IMF and affect the decomposition accuracy of EMD. In view of this phenomenon, an EMD endpoint effect suppression method based on boundary local feature scale adaptive matching extension was proposed. This method can consider both the change trend of the signal at the endpoint and the change rule of the signal inside. The simulation results showed that the proposed method had better suppression effect on the intrinsic endpoint effect of EMD than the traditional EMD endpoint effect suppression method and achieved high-precision IMF. The endpoint effect suppression method of EMD based on boundary local feature scale adaptive matching extension was used to process the actual blasting seismic signal. The decomposition results showed that the method can effectively suppress the endpoint effect of EMD of blasting seismic signal and are helpful to extract the detailed characteristic parameters of blasting seismic signal.
url http://dx.doi.org/10.1155/2021/2804539
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AT miaosun applicationofboundarylocalfeaturescaleadaptivematchingextensionemdendpointeffectsuppressionmethodinblastingseismicwavesignalprocessing
AT yanilu applicationofboundarylocalfeaturescaleadaptivematchingextensionemdendpointeffectsuppressionmethodinblastingseismicwavesignalprocessing
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