Title of article
Identification of Torsionally Coupled Shear Buildings Models Using a Vector Parameterization
Author/Authors
Concha, Antonio Facultad de Ingenier´ıa Mecanica y El ´ ectrica, Universidad de Colima, Mexico , Alvarez-Icaza,Luis Instituto de Ingenier´ıa - Universidad Nacional Autonoma de M exico,, Mexico
Pages
23
From page
1
To page
23
Abstract
A methodology to estimate the shear model of seismically excited, torsionally coupled buildings using acceleration measurements of the ground and floors is presented. A vector parameterization that considers Rayleigh damping for the building is introduced that allows identifying the stiffness/mass and damping/mass ratios of the structure, as well as their eccentricities and radii of gyration. This parameterization has the advantage that its number of parameters is smaller than that obtained with matrix parameterizations or when Rayleigh damping is not used. Thus, the number of spectral components of the excitation signal required to identity the structural parameters is reduced. To deal with constant disturbances and measurement noise that corrupt acceleration measurements, Linear Integral Filters are used that guarantee elimination of constant disturbances and attenuation of noise.
Keywords
Vector Parameterization , Identification , Torsionally Coupled Shear , Buildings Models
Journal title
Shock and Vibration
Serial Year
2016
Full Text URL
Record number
2615751
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