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Erschienen in: Cluster Computing 2/2019

12.02.2018

Structural damage diagnosis and fine scale finite element intelligence simulation of long span cable stayed bridges

verfasst von: Xiao-Qin Li, Qian-Jun Chen, Zu-De Ding

Erschienen in: Cluster Computing | Sonderheft 2/2019

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Abstract

According to the accumulation characteristics presented by the security threat factors existed in building structure, it is relatively difficult to carry out real-time danger monitoring. In addition, the noise and structure will form complex interference and make the real-time monitoring more difficult. Therefore, this paper proposes one bridge structure monitoring algorithm of restricted Boltzmann machine (SDRBM) based on sparse cross-entropy penalty factor. Firstly, the improvement of deep network learning process based on sparse cross-entropy penalty factor and restricted Boltzmann machine (RBM) has effectively resolved the homogenization problems existed in deep network learning process; secondly, the preset rough set is used to make pretreatment for input bridge health signals to achieve complete preservation of data information and balance of effective reduction as well as simplify treatment complexity; finally, the experiment shows that the proposed DRBM bridge structure monitoring algorithm of sparse cross-entropy penalty factor can achieve bridge safety monitoring under the condition of unknown noise and structure.

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Metadaten
Titel
Structural damage diagnosis and fine scale finite element intelligence simulation of long span cable stayed bridges
verfasst von
Xiao-Qin Li
Qian-Jun Chen
Zu-De Ding
Publikationsdatum
12.02.2018
Verlag
Springer US
Erschienen in
Cluster Computing / Ausgabe Sonderheft 2/2019
Print ISSN: 1386-7857
Elektronische ISSN: 1573-7543
DOI
https://doi.org/10.1007/s10586-017-1515-y

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