Estimation of Joint Parameters Using Frequency-Based Substructuring Techniques

This study presents frequency-based substructuring (FBS) techniques and an identification method for predicting joint parameters. Two FBS techniques, FBS-1 and FBS-2, were derived by assuming pseudomasses at the joint nodes between adjacent substructures. It is estimated that the main reason for the...

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Main Authors: Hye-Sook Jang, Jae-Hyoung An, Hee-Chang Eun
Format: Article
Language:English
Published: Hindawi - SAGE Publishing 2024-01-01
Series:International Journal of Distributed Sensor Networks
Online Access:http://dx.doi.org/10.1155/2024/6684449
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author Hye-Sook Jang
Jae-Hyoung An
Hee-Chang Eun
author_facet Hye-Sook Jang
Jae-Hyoung An
Hee-Chang Eun
author_sort Hye-Sook Jang
collection DOAJ
description This study presents frequency-based substructuring (FBS) techniques and an identification method for predicting joint parameters. Two FBS techniques, FBS-1 and FBS-2, were derived by assuming pseudomasses at the joint nodes between adjacent substructures. It is estimated that the main reason for the discrepancy with the analytical FRFs is the difficulty in describing the low-frequency responses owing to the assumed pseudomasses of the substructures. Although the FRF curve based on the FBS-2 technique is very close to the analytical FRF curve up to the first resonance frequency, some inconsistencies occur thereafter. It is analyzed that the FRFs up to the first resonance frequency can be utilized for data expansion methods and system identification techniques. Paying attention to this result, this study also provides an identification method to estimate the joint parameters based on the FRF variation. Its validity is illustrated using a numerical example.
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spelling doaj.art-8134d782b3a9449aa8228c1ab1dbc69c2024-03-05T00:00:02ZengHindawi - SAGE PublishingInternational Journal of Distributed Sensor Networks1550-14772024-01-01202410.1155/2024/6684449Estimation of Joint Parameters Using Frequency-Based Substructuring TechniquesHye-Sook Jang0Jae-Hyoung An1Hee-Chang Eun2Department of Architectural EngineeringDepartment of Architectural EngineeringDepartment of Architectural EngineeringThis study presents frequency-based substructuring (FBS) techniques and an identification method for predicting joint parameters. Two FBS techniques, FBS-1 and FBS-2, were derived by assuming pseudomasses at the joint nodes between adjacent substructures. It is estimated that the main reason for the discrepancy with the analytical FRFs is the difficulty in describing the low-frequency responses owing to the assumed pseudomasses of the substructures. Although the FRF curve based on the FBS-2 technique is very close to the analytical FRF curve up to the first resonance frequency, some inconsistencies occur thereafter. It is analyzed that the FRFs up to the first resonance frequency can be utilized for data expansion methods and system identification techniques. Paying attention to this result, this study also provides an identification method to estimate the joint parameters based on the FRF variation. Its validity is illustrated using a numerical example.http://dx.doi.org/10.1155/2024/6684449
spellingShingle Hye-Sook Jang
Jae-Hyoung An
Hee-Chang Eun
Estimation of Joint Parameters Using Frequency-Based Substructuring Techniques
International Journal of Distributed Sensor Networks
title Estimation of Joint Parameters Using Frequency-Based Substructuring Techniques
title_full Estimation of Joint Parameters Using Frequency-Based Substructuring Techniques
title_fullStr Estimation of Joint Parameters Using Frequency-Based Substructuring Techniques
title_full_unstemmed Estimation of Joint Parameters Using Frequency-Based Substructuring Techniques
title_short Estimation of Joint Parameters Using Frequency-Based Substructuring Techniques
title_sort estimation of joint parameters using frequency based substructuring techniques
url http://dx.doi.org/10.1155/2024/6684449
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AT jaehyoungan estimationofjointparametersusingfrequencybasedsubstructuringtechniques
AT heechangeun estimationofjointparametersusingfrequencybasedsubstructuringtechniques