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Identification and Synthesis of Components for Vibration Transfer Path Analysis

Per Sjövall (Institutionen för tillämpad mekanik, Dynamik)
Göteborg : Chalmers University of Technology, 2007. ISBN: 978-91-7385-026-1.- 164 s.

Transmission of structure-borne vibrations in built-up structures, e.g. vehicles such as aircraft, automobiles and trains, is addressed. Methodologies for modeling, analysis, prediction and reduction of vibrations are developed. In particular experimental modeling based on testing and system identification is considered. Special attention is given to identification of physically consistent models. Pertinent substructuring methods that can handle component models based on experimental data are discussed. Furthermore, practical difficulties regarding vibrational testing are addressed. A procedure that is able to extract a substructure model from measurements on a larger dynamical system is formulated. The work also concerns methods for transfer path analysis and vibration control. A critical issue is how to characterize a vibration transmission path. It is shown that different approaches may give deviating results in terms of ranking of dominant paths. Regarding vibration control the problem of optimal placement of sensors is investigated. A method based on Kalman filter theory is developed, whereby the sensor placement problem and prediction of responses inaccessible for direct measurement are simultaneously approached.

Nyckelord: System identification; Substructuring; State-space models; Experimental methods; Transfer path analysis; Vibration control; Sensor placement; Indirect sensing; Kalman filter

Denna post skapades 2007-10-09. Senast ändrad 2013-09-25.
CPL Pubid: 52206


Institutioner (Chalmers)

Institutionen för tillämpad mekanik, Dynamik (1900-2017)


Teknisk mekanik

Chalmers infrastruktur

Relaterade publikationer

Inkluderade delarbeten:

Constrained state–space system identification with application to structural dynamics

Component system identification and state-space model synthesis

Transmisson Path Characterization for Passive Vibration Control

Substructure System Identification from Coupled System Test Data


Datum: 2007-11-09
Tid: 10:00
Lokal: HA1
Opponent: Professor Daniel J. Rixen, Delft University of Technology, The Netherlands

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Doktorsavhandlingar vid Chalmers tekniska högskola. Ny serie 2707