The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation Entropy

Research on damage diagnosis or safety monitoring based on structural vibration response is one of the hot issues in the engineering field. The characteristic information of the structure is obtained by analyzing the structure response data. In the process of data analysis, the choice of data length...

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Main Authors: Jianwei Zhang, Ziyu Li, Peng Yan, Yang Li, Jinlin Huang
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/6654089
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spelling doaj-9436fff9db7d40cb8fec49d9f614f7622021-08-30T00:00:19ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/6654089The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation EntropyJianwei Zhang0Ziyu Li1Peng Yan2Yang Li3Jinlin Huang4School of Water ConservancySchool of Water ConservancyKey Laboratory of Rock Mechanics in Hydraulic Structural Engineering of Ministry of EducationSchool of Water ConservancyGuangdong Research Institute of Water Resources and HydropowerResearch on damage diagnosis or safety monitoring based on structural vibration response is one of the hot issues in the engineering field. The characteristic information of the structure is obtained by analyzing the structure response data. In the process of data analysis, the choice of data length is very important, which is related to the validity of the structure monitoring results. At present, the selection of data length is usually subjective, which reduces the rigor of the structure monitoring process. Therefore, a method based on improved multiscale permutation entropy (IMPE) is proposed to determine the optimal data analytical length (ODAL) of vibration data. This method creatively applies multiscale permutation entropy (MPE) to the field of data length analysis when processing nonlinear and nonstationary signals and optimizes MPE with the help of the improved coarse-grained method to obtain IMPE. IMPE is sensitive to different data lengths, and the entropy changes with the increase of the data length and tends to be stable. Here, the stable value is defined as a standard entropy. The entropy satisfying 97% of the standard entropy is used as the effective entropy, and the corresponding data length value of the effective entropy is selected as the ODAL of the vibration data. This method is suitable for many fields, provides a reliable data analytical length for data analysis, and has good engineering practicability.http://dx.doi.org/10.1155/2021/6654089
collection DOAJ
language English
format Article
sources DOAJ
author Jianwei Zhang
Ziyu Li
Peng Yan
Yang Li
Jinlin Huang
spellingShingle Jianwei Zhang
Ziyu Li
Peng Yan
Yang Li
Jinlin Huang
The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation Entropy
Shock and Vibration
author_facet Jianwei Zhang
Ziyu Li
Peng Yan
Yang Li
Jinlin Huang
author_sort Jianwei Zhang
title The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation Entropy
title_short The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation Entropy
title_full The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation Entropy
title_fullStr The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation Entropy
title_full_unstemmed The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation Entropy
title_sort method for determining optimal analysis length of vibration data based on improved multiscale permutation entropy
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description Research on damage diagnosis or safety monitoring based on structural vibration response is one of the hot issues in the engineering field. The characteristic information of the structure is obtained by analyzing the structure response data. In the process of data analysis, the choice of data length is very important, which is related to the validity of the structure monitoring results. At present, the selection of data length is usually subjective, which reduces the rigor of the structure monitoring process. Therefore, a method based on improved multiscale permutation entropy (IMPE) is proposed to determine the optimal data analytical length (ODAL) of vibration data. This method creatively applies multiscale permutation entropy (MPE) to the field of data length analysis when processing nonlinear and nonstationary signals and optimizes MPE with the help of the improved coarse-grained method to obtain IMPE. IMPE is sensitive to different data lengths, and the entropy changes with the increase of the data length and tends to be stable. Here, the stable value is defined as a standard entropy. The entropy satisfying 97% of the standard entropy is used as the effective entropy, and the corresponding data length value of the effective entropy is selected as the ODAL of the vibration data. This method is suitable for many fields, provides a reliable data analytical length for data analysis, and has good engineering practicability.
url http://dx.doi.org/10.1155/2021/6654089
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