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author:

Liu, Hao-Liang (Liu, Hao-Liang.) [1] | Ren, Wei-Xin (Ren, Wei-Xin.) [2]

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EI Scopus

Abstract:

Stay cables are the most critical structural components in modern cable-stayed bridges. The cable tension plays an important role in the construction control and long-term monitoring of cable-stayed bridges. Experimental vibration measurement is one of the most widely used methods for tension evaluation and condition assessment of cable-stayed bridge. There is a unique relationship between the tension force and fundamental frequency of the stay cable. The key to success of this technique is the accuracy of identified fundamental frequency of each stay cable. In this paper, experimental modal analysis of bridge stay cables is carried out using output-only acceleration records of the stay cables. An automated data analysis approach to determine cable fundamental frequency is proposed with the power spectral density (PSD) and cepstrum method. Application of the automated data analysis approach to the Jinma Bridge cables in Guangdong Province of China where test was carried out using ambient vibration measurement demonstrated high identification accuracy and confidence of this technique.

Keyword:

Bridge cables Cable stayed bridges Data handling Electric measuring bridges Identification (control systems) Information analysis Modal analysis Natural frequencies Power spectral density Spectral density Vibration analysis Vibration measurement

Community:

  • [ 1 ] [Liu, Hao-Liang]Fuzhou University, China
  • [ 2 ] [Ren, Wei-Xin]Fuzhou University, China

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Year: 2017

Page: 323-330

Language: English

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ESI Highly Cited Papers on the List: 0 Unfold All

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30 Days PV: 0

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