Approximate Calculation Method for Noncentral t-Distribution Quantile

In the process of structural design and structural performance evaluation, the inference of the reliable life of the structure and the representative value of the material strength is a necessary work. The determination of material strength is the presumption of the quantile of the normal distributi...

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Main Authors: Jun Gao, Jitao Yao
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2021/9917575
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spelling doaj-1aec402e35a94728b091f9a853882ff72021-06-07T02:13:33ZengHindawi LimitedMathematical Problems in Engineering1563-51472021-01-01202110.1155/2021/9917575Approximate Calculation Method for Noncentral t-Distribution QuantileJun Gao0Jitao Yao1College of Civil EngineeringCollege of Civil EngineeringIn the process of structural design and structural performance evaluation, the inference of the reliable life of the structure and the representative value of the material strength is a necessary work. The determination of material strength is the presumption of the quantile of the normal distribution, and the determination of the confidence level of the quantile of the normal distribution involves the noncentral t-distribution function. However, the calculation of the quantile is very complicated and is often provided in the form of a numerical table, which often involves multiparameter interpolation calculation, so it is not convenient to apply. The existing approximate calculation methods for noncentral t-distribution quantiles have strict application conditions, and the calculation process is relatively cumbersome. It is still difficult to meet actual needs in terms of fitting accuracy, application range, and convenience. In this paper, a new calculation method for noncentral t-distribution quantiles is proposed by introducing new probability expressions and related approximate distributions, based on theoretical derivation and numerical fitting. The comparative analysis results show that the method not only is convenient for calculation but also has the advantages of higher accuracy and wider application range, and it is more in line with the actual needs of engineering.http://dx.doi.org/10.1155/2021/9917575
collection DOAJ
language English
format Article
sources DOAJ
author Jun Gao
Jitao Yao
spellingShingle Jun Gao
Jitao Yao
Approximate Calculation Method for Noncentral t-Distribution Quantile
Mathematical Problems in Engineering
author_facet Jun Gao
Jitao Yao
author_sort Jun Gao
title Approximate Calculation Method for Noncentral t-Distribution Quantile
title_short Approximate Calculation Method for Noncentral t-Distribution Quantile
title_full Approximate Calculation Method for Noncentral t-Distribution Quantile
title_fullStr Approximate Calculation Method for Noncentral t-Distribution Quantile
title_full_unstemmed Approximate Calculation Method for Noncentral t-Distribution Quantile
title_sort approximate calculation method for noncentral t-distribution quantile
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1563-5147
publishDate 2021-01-01
description In the process of structural design and structural performance evaluation, the inference of the reliable life of the structure and the representative value of the material strength is a necessary work. The determination of material strength is the presumption of the quantile of the normal distribution, and the determination of the confidence level of the quantile of the normal distribution involves the noncentral t-distribution function. However, the calculation of the quantile is very complicated and is often provided in the form of a numerical table, which often involves multiparameter interpolation calculation, so it is not convenient to apply. The existing approximate calculation methods for noncentral t-distribution quantiles have strict application conditions, and the calculation process is relatively cumbersome. It is still difficult to meet actual needs in terms of fitting accuracy, application range, and convenience. In this paper, a new calculation method for noncentral t-distribution quantiles is proposed by introducing new probability expressions and related approximate distributions, based on theoretical derivation and numerical fitting. The comparative analysis results show that the method not only is convenient for calculation but also has the advantages of higher accuracy and wider application range, and it is more in line with the actual needs of engineering.
url http://dx.doi.org/10.1155/2021/9917575
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