A Bayesian modal identification method has been proposed in the companion paper that allows the most probable values of modal parameters to be determined using asynchronous ambient vibration data. This paper investigates the identification uncertainty of modal parameters in terms of their posterior covariance matrix. Computational issues are addressed. Analytical expressions are derived to allow the posterior covariance matrix to be evaluated accurately and efficiently. Synthetic, laboratory and field data examples are presented to verify the consistency, investigate potential modelling error and demonstrate practical applications
The identification of modal properties from field testing of civil engineering structures is becomin...
Operational modal analysis (OMA) aims at identifying structural modal properties with (output-only) ...
In structural health monitoring (SHM), ‘data driven models’ are often applied to investigate the rel...
In vibration tests, multiple sensors are used to obtain detailed mode shape information about the te...
A Bayesian statistical framework has been developed for modal identification using free vibration da...
In full-scale ambient vibration tests, multiple setups are often performed for measurement when it i...
Ambient vibration test has gained increasing popularity in practice as it provides an economical mea...
© 2019 Elsevier Ltd A Bayesian frequency domain method for modal identification using asynchronous a...
Operational modal analysis aims at identifying the modal properties (natural frequency, damping, etc...
This paper presents a qualitative analysis of the uncertainty laws for the modal parameters identifi...
This book presents operational modal analysis (OMA), employing a coherent and comprehensive Bayesian...
Operational modal analysis (OMA) aims at identifying the structural modal properties (e.g., natural ...
Operational modal analysis (OMA) has been used nowadays for identifying the modal properties of stru...
Operational modal analysis has attracted a lot of attention in both theory development and field app...
Modal identification is a technique that can assess modal properties of structures based on vibratio...
The identification of modal properties from field testing of civil engineering structures is becomin...
Operational modal analysis (OMA) aims at identifying structural modal properties with (output-only) ...
In structural health monitoring (SHM), ‘data driven models’ are often applied to investigate the rel...
In vibration tests, multiple sensors are used to obtain detailed mode shape information about the te...
A Bayesian statistical framework has been developed for modal identification using free vibration da...
In full-scale ambient vibration tests, multiple setups are often performed for measurement when it i...
Ambient vibration test has gained increasing popularity in practice as it provides an economical mea...
© 2019 Elsevier Ltd A Bayesian frequency domain method for modal identification using asynchronous a...
Operational modal analysis aims at identifying the modal properties (natural frequency, damping, etc...
This paper presents a qualitative analysis of the uncertainty laws for the modal parameters identifi...
This book presents operational modal analysis (OMA), employing a coherent and comprehensive Bayesian...
Operational modal analysis (OMA) aims at identifying the structural modal properties (e.g., natural ...
Operational modal analysis (OMA) has been used nowadays for identifying the modal properties of stru...
Operational modal analysis has attracted a lot of attention in both theory development and field app...
Modal identification is a technique that can assess modal properties of structures based on vibratio...
The identification of modal properties from field testing of civil engineering structures is becomin...
Operational modal analysis (OMA) aims at identifying structural modal properties with (output-only) ...
In structural health monitoring (SHM), ‘data driven models’ are often applied to investigate the rel...