Wind and Structures
Volume 38, Number 2, 2024, pages 119-128
DOI: 10.12989/was.2024.38.2.119
Particle filter approach for extracting the non-linear aerodynamic damping of a cable-stayed bridge subjected to crosswind action
Aljaboobi Mohammed, Shi-Xiong Zheng and AL-Sebaeai Maged
Abstract
The aerodynamic damping is an essential factor that can considerably affect the dynamic response of the cablestayed bridge induced by crosswind load. However, developing an accurate and efficient aerodynamic damping model is crucial
for evaluating the crosswind load-induced response on cable-stayed bridges. Therefore, this study proposes a new method for
identifying aerodynamic damping of the bridge structures under crosswind load using an extended Kalman filter (EKF) and the
particle filter (PF) algorithm. The EKF algorithm is introduced to capture the aerodynamic damping ratio. PF technique is used
to select the optimal spectral representation of the noise. The effectiveness and accuracy of the proposed solution were
investigated through full-scale vibration measurement data of the crosswind-induced on the bridge's girder. The results show that
the proposed solution can generate an efficient and robust estimation. The errors between the target and extracted values are
around 0.01 mm and 0.003^o, respectively, for the vertical and torsional motion. The relationship between the amplitude and the
aerodynamic damping ratio is linear for small reduced wind velocity and nonlinear with the increasing value of the reduced wind
velocity. Finally, the results show the influence of the level of noise.
Key Words
aerodynamic damping; cable-stayed bridge; crosswind load; extended Kalman filter; particle filter; reduced wind velocity
Address
Aljaboobi Mohammed, Shi-Xiong Zheng and AL-Sebaeai Maged:School of Civil Engineering, Southwest Jiaotong University, Chengdu 610031, P.R. China