This paper aims to identify the natural frequencies and modal damping ratios of the Tsing Ma suspension bridge during Typhoon Victor using the newly emerged empirical mode decomposition (EMD) method in conjunction with the Hilbert-transform (HT) technique. Stationary tests on the acceleration responses of the bridge recorded at different locations and in different directions during Typhoon Victor are first carried out to classify the recorded response data. Natural frequencies and modal damping ratios identified by the EMD-HT method are then compared with those obtained by the traditional fast Fourier transform (FFT)-based method. The modal parameters identified by the EMD-HT method from the bridge responses recorded at different locations ...
The Tenth International Conference on Bridge Maintenance, Safety and Management (IABMAS 2020), Sappo...
Modal identification involves primarily the determination of natural frequencies, damping ratios, mo...
US-Korea Worshop on New Frontier in Infrastructural/Seismic Engineering, Seoul, South Korea, 24-25 A...
In this paper, identification of the natural frequencies, damping ratios and mode shapes of the stru...
The structural health monitoring system (SHMS) provides an effective tool to conduct full-scale meas...
This paper presents results of a research on modal identification of the Tsing Ma bridge by using an...
Structural Health Monitoring (SHM) in bridges is an important field, which implements increasingly i...
A long suspension bridge located in a typhoon region may be exposed to a high risk of wind-induced l...
As a part of the new coastal highway E39 which is being planned and built along the west coast of No...
The Norwegian Public Roads Administration is commissioned to investigate feasible alternatives to ei...
Modal parameters are important parameters for the dynamic response analysis of structures. An output...
It is difficult to accurately identify the dynamic deformation of bridges from Global Navigation Sat...
In this paper an ambient response analysis of the Great Belt Bridge is presented. The Great Belt Bri...
The Alfred Zampa Memorial Bridge (AZMB), a newly built long-span suspension bridge, is located 32km ...
Bridges have been built around the world for at least 3000 years and have made it possible for man t...
The Tenth International Conference on Bridge Maintenance, Safety and Management (IABMAS 2020), Sappo...
Modal identification involves primarily the determination of natural frequencies, damping ratios, mo...
US-Korea Worshop on New Frontier in Infrastructural/Seismic Engineering, Seoul, South Korea, 24-25 A...
In this paper, identification of the natural frequencies, damping ratios and mode shapes of the stru...
The structural health monitoring system (SHMS) provides an effective tool to conduct full-scale meas...
This paper presents results of a research on modal identification of the Tsing Ma bridge by using an...
Structural Health Monitoring (SHM) in bridges is an important field, which implements increasingly i...
A long suspension bridge located in a typhoon region may be exposed to a high risk of wind-induced l...
As a part of the new coastal highway E39 which is being planned and built along the west coast of No...
The Norwegian Public Roads Administration is commissioned to investigate feasible alternatives to ei...
Modal parameters are important parameters for the dynamic response analysis of structures. An output...
It is difficult to accurately identify the dynamic deformation of bridges from Global Navigation Sat...
In this paper an ambient response analysis of the Great Belt Bridge is presented. The Great Belt Bri...
The Alfred Zampa Memorial Bridge (AZMB), a newly built long-span suspension bridge, is located 32km ...
Bridges have been built around the world for at least 3000 years and have made it possible for man t...
The Tenth International Conference on Bridge Maintenance, Safety and Management (IABMAS 2020), Sappo...
Modal identification involves primarily the determination of natural frequencies, damping ratios, mo...
US-Korea Worshop on New Frontier in Infrastructural/Seismic Engineering, Seoul, South Korea, 24-25 A...