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dc.creatorAzam S.E., Dertimanis V., Chatzi E., Papadimitriou C.en
dc.date.accessioned2023-01-31T07:34:55Z
dc.date.available2023-01-31T07:34:55Z
dc.date.issued2015
dc.identifier.urihttp://hdl.handle.net/11615/71022
dc.description.abstractThe subject of predicting structural response, for control or fatigue assessment purposes, via output only vibration measurements is an emerging topic of Structural Health Monitoring. The subject of estimation of the states of a partially observed dynamic system within a stochastic framework has been studied by many scientists and there are well developed algorithms to manage both linear and nonlinear state-space models. Dealing with structural systems, the system states comprise the response displacements and velocities at the degrees of freedom of the structure. On one hand, in practical cases it is difficult or sometimes impossible to measure structural displacements and velocities for continuous monitoring purposes. On the other hand, recent developments in highly accurate low consumption wireless MEMS accelerometers permit continuous and accurate acceleration measurements when dealing with structural systems. Dealing with operational conditions the uncertainties stemming from the absence of information on the input force, model inaccuracy and measurement errors render the state estimation a challenging task, with research to achieve a robust solution still in progress. Eftekhar Azam et al. [1] have proposed a novel dual Kalman filter to accomplish the task of joint input-state estimation for linear time invariant systems. In this study, the extension of such a scheme is considered for the joint input-state and parameter estimation of linear systems.en
dc.language.isoenen
dc.sourceUNCECOMP 2015 - 1st ECCOMAS Thematic Conference on Uncertainty Quantification in Computational Sciences and Engineeringen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84942924281&partnerID=40&md5=4d1299c730145362542f09e5e3769c44
dc.subjectAccelerometersen
dc.subjectDegrees of freedom (mechanics)en
dc.subjectInvarianceen
dc.subjectKalman filtersen
dc.subjectLinear systemsen
dc.subjectPatient monitoringen
dc.subjectSlip formingen
dc.subjectState estimationen
dc.subjectState space methodsen
dc.subjectStochastic modelsen
dc.subjectStochastic systemsen
dc.subjectStructural health monitoringen
dc.subjectTime varying control systemsen
dc.subjectTime varying systemsen
dc.subjectUncertainty analysisen
dc.subjectVibration measurementen
dc.subjectContinuous monitoringen
dc.subjectInput estimationen
dc.subjectLinear time invariant systemsen
dc.subjectLinear time-varying systemsen
dc.subjectNonlinear state space modelsen
dc.subjectOperational conditionsen
dc.subjectResponse displacementen
dc.subjectStructural displacementen
dc.subjectParameter estimationen
dc.subjectNational Technical University of Athensen
dc.titleOutput-only schemes for joint input-state-parameter estimation of linear systemsen
dc.typeconferenceItemen


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