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Shock and Vibration
Volume 2016, Article ID 8902727, 13 pages
http://dx.doi.org/10.1155/2016/8902727
Research Article

Structural Performance Assessment Based on Statistical and Wavelet Analysis of Acceleration Measurements of a Building during an Earthquake

1Department of Civil and Environmental Engineering, Incheon National University, Incheon 406-840, Republic of Korea
2Department of Public Works and Civil Engineering, Mansoura University, Mansoura 35516, Egypt
3Incheon Disaster Prevention Research Center, Incheon National University, Incheon 406-840, Republic of Korea
4National Research Institute of Astronomy and Geophysics, Cairo 11421, Egypt
5National Disaster Management Institute, Ministry of Security and Public Administration, Seoul 121-719, Republic of Korea

Received 3 September 2015; Accepted 21 October 2015

Academic Editor: Guillermo Rus

Copyright © 2016 Mosbeh R. Kaloop et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Citations to this Article [9 citations]

The following is the list of published articles that have cited the current article.

  • K. Zhou, and Z.Y. Wu, “Strain gauge placement optimization for structural performance assessment,” Engineering Structures, vol. 141, pp. 184–197, 2017. View at Publisher · View at Google Scholar
  • Junhua Wu, Zheshu Ma, and Yonghui Zhang, “A Time-Frequency Research for Ultrasonic Guided Wave Generated from the Debonding Based on a Novel Time-Frequency Analysis Technique,” Shock and Vibration, vol. 2017, pp. 1–11, 2017. View at Publisher · View at Google Scholar
  • Mosbeh R. Kaloop, and Jong Wan Hu, “Seismic Response Prediction of Buildings with Base Isolation Using Advanced Soft Computing Approaches,” Advances in Materials Science and Engineering, vol. 2017, pp. 1–12, 2017. View at Publisher · View at Google Scholar
  • Dibal, Onwuka, Alenoghena, and Agajo, “Application of wavelet transform in spectrum sensing for cognitive radio: A survey,” Physical Communication, vol. 28, pp. 45–57, 2018. View at Publisher · View at Google Scholar
  • Amr Z. Elkady, Maryam A. Seleemah, and Farhad Ansari, “Structural response of a cable-stayed bridge subjected to lateral seismic excitations,” Journal of Civil Structural Health Monitoring, 2018. View at Publisher · View at Google Scholar
  • Alicja Kowalska-Koczwara, Filip Pachla, Piotr Stecz, Krzysztof Stypuła, Tadeusz Tatara, Jerzy Lejk, and Marek Sokołowski, “Vibration-Based Damage Identification and Condition Monitoring of Metro Trains: Warsaw Metro Case Study,” Shock and Vibration, vol. 2018, pp. 1–14, 2018. View at Publisher · View at Google Scholar
  • Yanmei Meng, Johnny Qin, Chunbo Ye, Shuangshuang Yu, Jinlai Zhang, and Daoyan Shen, “Sugarcane node recognition technology based on wavelet analysis,” Computers and Electronics in Agriculture, vol. 158, pp. 68–78, 2019. View at Publisher · View at Google Scholar
  • Zheng Yi Wu, Harry W. Shenton, Kai Zhou, and Michael J. Chajes, “Development of sensor placement optimization tool and application to large-span cable-stayed bridge,” Journal of Civil Structural Health Monitoring, vol. 9, no. 1, pp. 77–90, 2019. View at Publisher · View at Google Scholar
  • Woo Hyun Ban, Jong Wan Hu, and Mosbeh R. Kaloop, “Prestressed Continuous Bridge Evaluation using Structural Health Monitoring System,” IOP Conference Series: Materials Science and Engineering, vol. 473, pp. 012048, 2019. View at Publisher · View at Google Scholar