In this paper, we introduce a univariate four-parameter distribution. Several known distributions like exponentiated Weibull or extended generalized exponential distribution can be obtained as special case of this distribution. The new distribution is quite flexible and can be used quite effectively in analysing survival or reliability data. It can have a decreasing, increasing, decreasing-increasing-decreasing (DID), upside-down bathtub (unimodal) and bathtub-shaped failure rate function depending on its parameters. We provide a comprehensive account of the mathematical properties of the new distribution. In particular, we derive expressions for the moments, mean deviations, Rényi and Shannon entropy. We discuss maximum likelihood estimati...
A new lifetime distribution capable of modeling a bathtub-shaped hazard-rate function is proposed. T...
In this paper, we introduce a new class of distributions by compounding the exponentiated extended W...
An Exponentiated Inverted Weibull Distribution (EIWD) has a hazard rate (failure rate) function that...
In this paper, we introduce a univariate four-parameter distribution. Several known distributions li...
In this article, a new four-parameter continuous model, called the exponentiated Weibull exponential...
Abstract We study the gamma-exponentiated Weibull distribution which includes as special cases sever...
A new four-parameter probability model, referred to the exponentiated Weibull Rayleigh (EWR) distrib...
In this paper a four parameter Exponentiated Generalized Exponentiated exponential distribution Is d...
In this article, a generalization of the Weibull distribution is being studied in some details. The ...
This paper introduces a new flexible extension of power generalized Weibull distribution which conta...
In this article, a new four-parameter lifetime distribution, namely, the Weibull-Linear exponential ...
This study proposes a new distribution called exponentiated Weibull Burr type X distribution which p...
This study proposes a new distribution called exponentiated Weibull Burr type X distribution which p...
In this article we introduce an extension of Chen’s (2000) family of distributions given by Lehman a...
In this paper, we introduce a new class of distributions by compounding the exponentiated extended W...
A new lifetime distribution capable of modeling a bathtub-shaped hazard-rate function is proposed. T...
In this paper, we introduce a new class of distributions by compounding the exponentiated extended W...
An Exponentiated Inverted Weibull Distribution (EIWD) has a hazard rate (failure rate) function that...
In this paper, we introduce a univariate four-parameter distribution. Several known distributions li...
In this article, a new four-parameter continuous model, called the exponentiated Weibull exponential...
Abstract We study the gamma-exponentiated Weibull distribution which includes as special cases sever...
A new four-parameter probability model, referred to the exponentiated Weibull Rayleigh (EWR) distrib...
In this paper a four parameter Exponentiated Generalized Exponentiated exponential distribution Is d...
In this article, a generalization of the Weibull distribution is being studied in some details. The ...
This paper introduces a new flexible extension of power generalized Weibull distribution which conta...
In this article, a new four-parameter lifetime distribution, namely, the Weibull-Linear exponential ...
This study proposes a new distribution called exponentiated Weibull Burr type X distribution which p...
This study proposes a new distribution called exponentiated Weibull Burr type X distribution which p...
In this article we introduce an extension of Chen’s (2000) family of distributions given by Lehman a...
In this paper, we introduce a new class of distributions by compounding the exponentiated extended W...
A new lifetime distribution capable of modeling a bathtub-shaped hazard-rate function is proposed. T...
In this paper, we introduce a new class of distributions by compounding the exponentiated extended W...
An Exponentiated Inverted Weibull Distribution (EIWD) has a hazard rate (failure rate) function that...