Simultaneous identification of the load and unknown parameters of the structure based on the perturbation method

For when a structure is both subjected to unknown loads and characterized by unknown parameters and structural parameter identification and load identification algorithms cannot be applied under these circumstances, this article proposes a new algorithm based on the perturbation method for the simul...

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Main Authors: Chongwen Wang, Chengbin Du, Shouyan Jiang
Format: Article
Language:English
Published: SAGE Publishing 2018-10-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814018805664
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spelling doaj-432f0b27f6794d8899b2ba32009519a12020-11-25T01:27:33ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402018-10-011010.1177/1687814018805664Simultaneous identification of the load and unknown parameters of the structure based on the perturbation methodChongwen WangChengbin DuShouyan JiangFor when a structure is both subjected to unknown loads and characterized by unknown parameters and structural parameter identification and load identification algorithms cannot be applied under these circumstances, this article proposes a new algorithm based on the perturbation method for the simultaneous identification of the load and unknown structural parameters using a few response points. The impulse response matrix is expanded with respect to the unknown parameters, and then the load term is combined with the unknown parameter perturbation term to generate the parameter–load term; finally, the load and unknown parameters can be simultaneously identified by iteration. The proposed algorithm is verified by an example of a 10-storey shear frame, and the effect of noise level, the number of response points, and the truncation ratio, which is a parameter introduced to improve the accuracy of the proposed algorithm, are studied. Moreover, the effect of the distribution of response points is discussed for another example of a simply supported beam, and the results show that when the response points are distributed over the full beam, the error is obviously smaller than when the response points are distributed over only part of the beam.https://doi.org/10.1177/1687814018805664
collection DOAJ
language English
format Article
sources DOAJ
author Chongwen Wang
Chengbin Du
Shouyan Jiang
spellingShingle Chongwen Wang
Chengbin Du
Shouyan Jiang
Simultaneous identification of the load and unknown parameters of the structure based on the perturbation method
Advances in Mechanical Engineering
author_facet Chongwen Wang
Chengbin Du
Shouyan Jiang
author_sort Chongwen Wang
title Simultaneous identification of the load and unknown parameters of the structure based on the perturbation method
title_short Simultaneous identification of the load and unknown parameters of the structure based on the perturbation method
title_full Simultaneous identification of the load and unknown parameters of the structure based on the perturbation method
title_fullStr Simultaneous identification of the load and unknown parameters of the structure based on the perturbation method
title_full_unstemmed Simultaneous identification of the load and unknown parameters of the structure based on the perturbation method
title_sort simultaneous identification of the load and unknown parameters of the structure based on the perturbation method
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2018-10-01
description For when a structure is both subjected to unknown loads and characterized by unknown parameters and structural parameter identification and load identification algorithms cannot be applied under these circumstances, this article proposes a new algorithm based on the perturbation method for the simultaneous identification of the load and unknown structural parameters using a few response points. The impulse response matrix is expanded with respect to the unknown parameters, and then the load term is combined with the unknown parameter perturbation term to generate the parameter–load term; finally, the load and unknown parameters can be simultaneously identified by iteration. The proposed algorithm is verified by an example of a 10-storey shear frame, and the effect of noise level, the number of response points, and the truncation ratio, which is a parameter introduced to improve the accuracy of the proposed algorithm, are studied. Moreover, the effect of the distribution of response points is discussed for another example of a simply supported beam, and the results show that when the response points are distributed over the full beam, the error is obviously smaller than when the response points are distributed over only part of the beam.
url https://doi.org/10.1177/1687814018805664
work_keys_str_mv AT chongwenwang simultaneousidentificationoftheloadandunknownparametersofthestructurebasedontheperturbationmethod
AT chengbindu simultaneousidentificationoftheloadandunknownparametersofthestructurebasedontheperturbationmethod
AT shouyanjiang simultaneousidentificationoftheloadandunknownparametersofthestructurebasedontheperturbationmethod
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