Hybrid Uncertain Analysis for Exterior Acoustic Field Prediction with Interval Random Parameters

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

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Externe Organisationen

  • Hunan University
  • The University of Liverpool
  • Tongji University
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Details

OriginalspracheEnglisch
Aufsatznummer1850006
FachzeitschriftInternational Journal of Computational Methods
Jahrgang15
Ausgabenummer2
Frühes Online-Datum19 Mai 2017
PublikationsstatusVeröffentlicht - 2018

Abstract

For exterior acoustic field problems that lack sufficient information to construct precise probability distributions, an interval random model is introduced to deal with the uncertain parameters. In the interval random model, the probability variables are employed to treat the uncertain parameters, whereas some distribution parameters of random variables are modeled as interval variables instead of precise values. Based on the interval random model, the interval random finite element equation for exterior acoustic fields is established and a hybrid uncertain analysis method is presented to solve the exterior acoustic field problem with interval random variables. In the presented method, by temporarily neglecting the uncertainties of interval variables, a first-order stochastic perturbation method is adopted to calculate the expectation and the variance of the response vector. According to the monotonicity of the expectation and variance of the response vector with respect to the interval variables, the lower and upper bounds of the expectation and variance of the response vector can be calculated by the vertex method. In addition, in order to ensure accuracy of the proposed method, the subinterval technique is introduced and investigated. The numerical example of a square flexible shell model is presented to demonstrate the effectiveness of the proposed method.

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Hybrid Uncertain Analysis for Exterior Acoustic Field Prediction with Interval Random Parameters. / Chen, Ning; Yu, Dejie; Xia, Baizhan et al.
in: International Journal of Computational Methods, Jahrgang 15, Nr. 2, 1850006, 2018.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

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title = "Hybrid Uncertain Analysis for Exterior Acoustic Field Prediction with Interval Random Parameters",
abstract = "For exterior acoustic field problems that lack sufficient information to construct precise probability distributions, an interval random model is introduced to deal with the uncertain parameters. In the interval random model, the probability variables are employed to treat the uncertain parameters, whereas some distribution parameters of random variables are modeled as interval variables instead of precise values. Based on the interval random model, the interval random finite element equation for exterior acoustic fields is established and a hybrid uncertain analysis method is presented to solve the exterior acoustic field problem with interval random variables. In the presented method, by temporarily neglecting the uncertainties of interval variables, a first-order stochastic perturbation method is adopted to calculate the expectation and the variance of the response vector. According to the monotonicity of the expectation and variance of the response vector with respect to the interval variables, the lower and upper bounds of the expectation and variance of the response vector can be calculated by the vertex method. In addition, in order to ensure accuracy of the proposed method, the subinterval technique is introduced and investigated. The numerical example of a square flexible shell model is presented to demonstrate the effectiveness of the proposed method.",
keywords = "interval random variable, matrix perturbation method, random moment method, subinterval technique, Uncertain exterior acoustic field prediction, vertex method",
author = "Ning Chen and Dejie Yu and Baizhan Xia and Michael Beer",
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T1 - Hybrid Uncertain Analysis for Exterior Acoustic Field Prediction with Interval Random Parameters

AU - Chen, Ning

AU - Yu, Dejie

AU - Xia, Baizhan

AU - Beer, Michael

N1 - © 2018 World Scientific Publishing Company

PY - 2018

Y1 - 2018

N2 - For exterior acoustic field problems that lack sufficient information to construct precise probability distributions, an interval random model is introduced to deal with the uncertain parameters. In the interval random model, the probability variables are employed to treat the uncertain parameters, whereas some distribution parameters of random variables are modeled as interval variables instead of precise values. Based on the interval random model, the interval random finite element equation for exterior acoustic fields is established and a hybrid uncertain analysis method is presented to solve the exterior acoustic field problem with interval random variables. In the presented method, by temporarily neglecting the uncertainties of interval variables, a first-order stochastic perturbation method is adopted to calculate the expectation and the variance of the response vector. According to the monotonicity of the expectation and variance of the response vector with respect to the interval variables, the lower and upper bounds of the expectation and variance of the response vector can be calculated by the vertex method. In addition, in order to ensure accuracy of the proposed method, the subinterval technique is introduced and investigated. The numerical example of a square flexible shell model is presented to demonstrate the effectiveness of the proposed method.

AB - For exterior acoustic field problems that lack sufficient information to construct precise probability distributions, an interval random model is introduced to deal with the uncertain parameters. In the interval random model, the probability variables are employed to treat the uncertain parameters, whereas some distribution parameters of random variables are modeled as interval variables instead of precise values. Based on the interval random model, the interval random finite element equation for exterior acoustic fields is established and a hybrid uncertain analysis method is presented to solve the exterior acoustic field problem with interval random variables. In the presented method, by temporarily neglecting the uncertainties of interval variables, a first-order stochastic perturbation method is adopted to calculate the expectation and the variance of the response vector. According to the monotonicity of the expectation and variance of the response vector with respect to the interval variables, the lower and upper bounds of the expectation and variance of the response vector can be calculated by the vertex method. In addition, in order to ensure accuracy of the proposed method, the subinterval technique is introduced and investigated. The numerical example of a square flexible shell model is presented to demonstrate the effectiveness of the proposed method.

KW - interval random variable

KW - matrix perturbation method

KW - random moment method

KW - subinterval technique

KW - Uncertain exterior acoustic field prediction

KW - vertex method

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DO - 10.1142/S0219876218500068

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VL - 15

JO - International Journal of Computational Methods

JF - International Journal of Computational Methods

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ER -

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