In this Chapter the solution of Fokker-Planck-Kolmogorov type equations is pursued with the aid of Complex Fractional Moments (CFMs). These quantities are the generalization of the well-known integer-order moments and are obtained as Mellin transform of the Probability Density Function (PDF). From this point of view, the PDF can be seen as inverse Mellin transform of the CFMs, and it can be obtained through a limited number of CFMs. These CFMs’ capability allows to solve the Fokker-Planck-Kolmogorov equation governing the evolutionary PDF of non-linear systems forced by white noise with an elegant and efficient strategy. The main difference between this new approach and the other one based on integer moments lies in the fact that CFMs do not require the closure scheme because a limited number of them is sufficient to accurately describe the evolutionary PDF and no hierarchy problem occurs.

Complex Fractional Moments for the Characterization of the Probabilistic Response of Non-linear Systems Subjected to White Noises / Di Paola, M., Pirrotta, A., Alotta, G., Di Matteo, A., Pinnola, F.P.. - 228:(2019), pp. 203-227. (International Conference on Structural Nonlinear Dynamics and Diagnosis (CSNDD) 2018, 25-27/06/2018, Tangier, Marocco, Internazionale ) [10.1007/978-981-13-9463-8_11].

Complex Fractional Moments for the Characterization of the Probabilistic Response of Non-linear Systems Subjected to White Noises

Alotta, Gioacchino;
2019-01-01

Abstract

In this Chapter the solution of Fokker-Planck-Kolmogorov type equations is pursued with the aid of Complex Fractional Moments (CFMs). These quantities are the generalization of the well-known integer-order moments and are obtained as Mellin transform of the Probability Density Function (PDF). From this point of view, the PDF can be seen as inverse Mellin transform of the CFMs, and it can be obtained through a limited number of CFMs. These CFMs’ capability allows to solve the Fokker-Planck-Kolmogorov equation governing the evolutionary PDF of non-linear systems forced by white noise with an elegant and efficient strategy. The main difference between this new approach and the other one based on integer moments lies in the fact that CFMs do not require the closure scheme because a limited number of them is sufficient to accurately describe the evolutionary PDF and no hierarchy problem occurs.
2019
Inglese
Mario Di Paola, Antonina Pirrotta, Gioacchino Alotta, Alberto Di Matteo, Francesco Paolo Pinnola
Topics in Nonlinear Mechanics and Physics
Su invito
International Conference on Structural Nonlinear Dynamics and Diagnosis (CSNDD) 2018, 25-27/06/2018, Tangier, Marocco, Internazionale
228
203
227
25
978-981-13-9462-1
978-981-13-9463-8
https://link.springer.com/chapter/10.1007/978-981-13-9463-8_11
Esperti anonimi
Internazionale
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
Di Paola, Mario; Pirrotta, Antonina; Alotta, Gioacchino; Di Matteo, Alberto; Pinnola, Francesco Paolo
273
Complex Fractional Moments for the Characterization of the Probabilistic Response of Non-linear Systems Subjected to White Noises / Di Paola, M., Pirrotta, A., Alotta, G., Di Matteo, A., Pinnola, F.P.. - 228:(2019), pp. 203-227. (International Conference on Structural Nonlinear Dynamics and Diagnosis (CSNDD) 2018, 25-27/06/2018, Tangier, Marocco, Internazionale ) [10.1007/978-981-13-9463-8_11].
5
none
info:eu-repo/semantics/conferenceObject
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12318/58403
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