A free fractional viscous oscillator as a forced standard damped vibration
Author:
Affiliation:
1. Dept. of Mechanics, Mathematics and Management Politecnico di Bari, Via Amendola, 128 Bari – 70125, ITALY
2. Science Dept. of Civil Engineering and Architecture Politecnico di Bari, Via Amendola, 128, Bari – 70125, ITALY
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Applied Mathematics,Analysis
Link
https://www.degruyter.com/document/doi/10.1515/fca-2016-0018/pdf
Reference27 articles.
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3. T. Atanacković, M. Nedeljkov, S. Pilipović and D. Rajter-Ćirić, Dynamics of a fractional derivative type of a viscoelastic rod with random excitation. Fract. Calc. Appl. Anal. 18, No 5 (2015), 1232–1251; DOI: 10.1515/fca-2015-0071; http://www.degruyter.com/view/j/fca.2015.18.issue-5/issue-files/fca.2015.18.issue-5.xml.
4. E. Bazhlekova and I. Bazhlekov, Viscoelastic flows with fractional derivative models: computational approach by convolutional calculus of Dimovski. Fract. Calc. Appl. Anal. 17, No 4 (2014), 954–976; DOI: 10.2478/s13540-014-0209-x; http://www.degruyter.com/view/j/fca.2014.17.issue-4/issue-files/fca.2014.17.issue-4.xml.
5. R. Caponetto, G. Maione, A. Pisano, M.R. Rapaić and E. Usai, Analysis and shaping of the self-sustained oscillations in relay controlled fractional-order systems. Fract. Calc. Appl. Anal. 16, No 1 (2013), 93–108; DOI: 10.2478/s13540-013-0007-x; http://www.degruyter.com/view/j/fca.2013.16.issue-1/issue-files/fca.2013.16.issue-1.xml.
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