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Using three-parameter sine fitting for scaling mode shapes with OMAH

  • Anders Brandt
  • , Marta Berardengo
  • , Stefano Manzoni
  • , Alfredo Cigada
  • University of Parma
  • Polytechnic University of Milan

Research output: Chapter in Book/Report/Conference proceedingArticle in proceedingsResearchpeer-review

Abstract

Scaling mode shapes obtained by operational modal analysis (OMA) is sometimes desirable, for example if the modal model is going to be used for model calibration, or for some structural health monitoring applications. A new method for scaling mode shapes from OMA, utilizing harmonic excitation and called OMAH, was recently proposed by the authors. In the present paper, we briefly describe this new technique, and then investigate a particular method, the three-parameter sine fit technique, for estimating the harmonic force and responses under different signal-to-noise (SNR) cases. This technique is shown to provide good performance even in severe SNR cases, and the method also has the advantage that the accuracy of the estimate of the harmonics can be estimated alongside the harmonic estimates, and can be improved by adding more data to the measurement. This allows to develop an iterative technique, allowing to estimate the harmonics iteratively, until a sufficient accuracy is obtained. The method is demonstrated on simulated OMA measurement data.

Original languageEnglish
Title of host publication7th International Operational Modal Analysis Conference : IOMAC 2017
EditorsW. Schober, J. Bienert, P.F. Fernandez, M.L. Aenlle
PublisherIOMAC
Publication date12. May 2017
Pages297-302
Publication statusPublished - 12. May 2017
Event7th International Operational Modal Analysis Conference - Technical University of Ingolstadt, Ingolstadt, Germany
Duration: 10. May 201712. May 2017
Conference number: 7

Conference

Conference7th International Operational Modal Analysis Conference
Number7
LocationTechnical University of Ingolstadt
Country/TerritoryGermany
CityIngolstadt
Period10/05/201712/05/2017

Keywords

  • Mode shape scaling
  • OMAH
  • Operational modal analysis

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