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概率模型的一种新生成器:用于寿命研究的指数化正弦-G族

A New Generator of Probability Models: The Exponentiated Sine-G Family for Lifetime Studies.

作者信息

Muhammad Mustapha, Alshanbari Huda M, Alanzi Ayed R A, Liu Lixia, Sami Waqas, Chesneau Christophe, Jamal Farrukh

机构信息

School of Mathematical Sciences, Hebei Normal University, Shijiazhuang 050024, China.

Department of Mathematical Sciences, Bayero University, Kano 700241, Nigeria.

出版信息

Entropy (Basel). 2021 Oct 24;23(11):1394. doi: 10.3390/e23111394.

DOI:10.3390/e23111394
PMID:34828091
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8619665/
Abstract

In this article, we propose the exponentiated sine-generated family of distributions. Some important properties are demonstrated, such as the series representation of the probability density function, quantile function, moments, stress-strength reliability, and Rényi entropy. A particular member, called the exponentiated sine Weibull distribution, is highlighted; we analyze its skewness and kurtosis, moments, quantile function, residual mean and reversed mean residual life functions, order statistics, and extreme value distributions. Maximum likelihood estimation and Bayes estimation under the square error loss function are considered. Simulation studies are used to assess the techniques, and their performance gives satisfactory results as discussed by the mean square error, confidence intervals, and coverage probabilities of the estimates. The stress-strength reliability parameter of the exponentiated sine Weibull model is derived and estimated by the maximum likelihood estimation method. Also, nonparametric bootstrap techniques are used to approximate the confidence interval of the reliability parameter. A simulation is conducted to examine the mean square error, standard deviations, confidence intervals, and coverage probabilities of the reliability parameter. Finally, three real applications of the exponentiated sine Weibull model are provided. One of them considers stress-strength data.

摘要

在本文中,我们提出了指数化正弦生成的分布族。展示了一些重要性质,如概率密度函数的级数表示、分位数函数、矩、应力-强度可靠性和雷尼熵。重点介绍了一个特殊的成员,称为指数化正弦威布尔分布;我们分析了它的偏度和峰度、矩、分位数函数、剩余均值和反向平均剩余寿命函数、顺序统计量以及极值分布。考虑了在平方误差损失函数下的最大似然估计和贝叶斯估计。通过模拟研究来评估这些技术,并且如通过估计的均方误差、置信区间和覆盖概率所讨论的那样,它们的性能给出了令人满意的结果。通过最大似然估计方法推导并估计了指数化正弦威布尔模型的应力-强度可靠性参数。此外,使用非参数自助法技术来近似可靠性参数的置信区间。进行了一次模拟以检验可靠性参数的均方误差、标准差、置信区间和覆盖概率。最后,提供了指数化正弦威布尔模型的三个实际应用。其中一个考虑了应力-强度数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbc9/8619665/7c1797ec88b7/entropy-23-01394-g013.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbc9/8619665/72fa9711290c/entropy-23-01394-g008.jpg
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