TY - JOUR
T1 - Exponentiated generalized inverted gompertz distribution
T2 - Properties and estimation methods with applications to symmetric and asymmetric data
AU - El-Morshedy, Mahmoud
AU - El-Faheem, Adel A.
AU - Al-Bossly, Afrah
AU - El-Dawoody, Mohamed
N1 - Publisher Copyright:
© 2021 by the authorsLicensee MDPI, Basel, Switzerland.
PY - 2021/10
Y1 - 2021/10
N2 - In this article, a new four-parameter lifetime model called the exponentiated generalized inverted Gompertz distribution is studied and proposed. The newly proposed distribution is able to model the lifetimes with upside-down bathtub-shaped hazard rates and is suitable for describ-ing the negative and positive skewness. A detailed description of some various properties of this model, including the reliability function, hazard rate function, quantile function, and median, mode, moments, moment generating function, entropies, kurtosis, and skewness, mean waiting lifetime, and others are presented. The parameters of the studied model are appreciated using four various estimation methods, the maximum likelihood, least squares, weighted least squares, and Cramér-von Mises methods. A simulation study is carried out to examine the performance of the new model estimators based on the four estimation methods using the mean squared errors (MSEs) and the bias estimates. The flexibility of the proposed model is clarified by studying four different engineering applications to symmetric and asymmetric data, and it is found that this model is more flexible and works quite well for modeling these data.
AB - In this article, a new four-parameter lifetime model called the exponentiated generalized inverted Gompertz distribution is studied and proposed. The newly proposed distribution is able to model the lifetimes with upside-down bathtub-shaped hazard rates and is suitable for describ-ing the negative and positive skewness. A detailed description of some various properties of this model, including the reliability function, hazard rate function, quantile function, and median, mode, moments, moment generating function, entropies, kurtosis, and skewness, mean waiting lifetime, and others are presented. The parameters of the studied model are appreciated using four various estimation methods, the maximum likelihood, least squares, weighted least squares, and Cramér-von Mises methods. A simulation study is carried out to examine the performance of the new model estimators based on the four estimation methods using the mean squared errors (MSEs) and the bias estimates. The flexibility of the proposed model is clarified by studying four different engineering applications to symmetric and asymmetric data, and it is found that this model is more flexible and works quite well for modeling these data.
KW - Estimation methods
KW - Exponentiated generalized class
KW - Hazard rate function
KW - Inverted Gompertz distribution
KW - Mean time to failure
KW - Moments
KW - Quantiles
KW - Simulation
UR - http://www.scopus.com/inward/record.url?scp=85116926175&partnerID=8YFLogxK
U2 - 10.3390/sym13101868
DO - 10.3390/sym13101868
M3 - Article
AN - SCOPUS:85116926175
SN - 2073-8994
VL - 13
JO - Symmetry
JF - Symmetry
IS - 10
M1 - 1868
ER -