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  • There are many ways to model and to analyze discrete event systems. In general these systems lead to a non-linear characteristic equation description in linear algebra. This paper presents an analytical method for solving the characteristic equation of higher order, which arise when solving ordinary differential equations of motion of rigid body systems with 2 ? p° ? 10 degrees of freedom. The objective of this work was to express the characteristic equation in the form of product quadratic polynomial, from which the modal components could be found. To validate the model, the modal parameters extraction technique - Ibrahim Time Domain (ITD) - was used. The extracted modal components were compared to those obtained from the analytical model with those obtained via the ITD method.
  • There are many ways to model and to analyze discrete event systems. In general these systems lead to a non-linear characteristic equation description in linear algebra. This paper presents an analytical method for solving the characteristic equation of higher order, which arise when solving ordinary differential equations of motion of rigid body systems with 2 ? p° ? 10 degrees of freedom. The objective of this work was to express the characteristic equation in the form of product quadratic polynomial, from which the modal components could be found. To validate the model, the modal parameters extraction technique - Ibrahim Time Domain (ITD) - was used. The extracted modal components were compared to those obtained from the analytical model with those obtained via the ITD method. (en)
Title
  • System Identification for Underdamped Mechanical Systems
  • System Identification for Underdamped Mechanical Systems (en)
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  • System Identification for Underdamped Mechanical Systems
  • System Identification for Underdamped Mechanical Systems (en)
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  • RIV/44555601:13420/14:43886185!RIV15-MSM-13420___
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  • 49119
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  • RIV/44555601:13420/14:43886185
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  • Modal Analysis, Natural Frequencies, Damping ratio, Characteristic equation (en)
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  • [E05E6147B5BC]
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  • Mariánské Lázně
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  • Plzeň
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  • 52nd conference on experimental stress analysis
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  • Nangolo, Fillemon Nduvu
  • Klimenda, František
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  • Západočeská univerzita v Plzni
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  • 978-80-7414-609-1
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  • 13420
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