In this paper, we proposed a new generalized family of distribution namely new alpha power Exponential (NAPE) distribution based on the new alpha power transformation (NAPT) method by Elbatal et al. (2019). Various statistical properties of the proposed distribution are obtained including moment, incomplete moment, conditional moment, probability weighted moments (PWMs), quantile function, residual and reversed residual lifetime function, stress-strength parameter, entropy and order statistics. The percentage point of NAPE distribution for some specific values of the parameters is also obtained. The method of maximum likelihood estimation (MLE) has been used for estimating the parameters of NAPE distribution. A simulation study has been per...
WOS: 000477600900001In the present paper, we introduce a new form of generalized Rayleigh distributi...
The Fr´echet distribution has several applications in different fields of study and is most commonly...
In this paper, we introduce a new generalization of the power Lindley distribution referred to as th...
In this article, a new family of lifetime distributions by adding an additional parameter to the exi...
Mahdavi A. and Kundu D. (2017) introduced a family for generating univariate distributions called th...
In this paper, we introduce the exponentiated generalized alpha power family of distributions to ext...
Here, a new method is recommended to characterize a new continuous distribution class, named the gen...
This paper considers three special cases: Exponential, Rayleigh and Lindley of a family of generaliz...
In this paper, we use the method of the alpha power transformation to introduce a new generalized al...
We introduce a new flexible modified alpha power (MAP) family of distributions by adding two paramet...
This paper addresses the estimation of the unknown parameters of the alphapower exponential distribu...
In Statistical theory, inclusion of an additional parameter to standard distributions is a usual pra...
In this paper, a new five-parameter model called alpha power exponentiated new Weibull-Pareto distri...
The exponential distribution is a popular statistical distribution to study the problems in lifetime...
In this paper, a new three-parameter lifetime distribution is introduced; the new model is a general...
WOS: 000477600900001In the present paper, we introduce a new form of generalized Rayleigh distributi...
The Fr´echet distribution has several applications in different fields of study and is most commonly...
In this paper, we introduce a new generalization of the power Lindley distribution referred to as th...
In this article, a new family of lifetime distributions by adding an additional parameter to the exi...
Mahdavi A. and Kundu D. (2017) introduced a family for generating univariate distributions called th...
In this paper, we introduce the exponentiated generalized alpha power family of distributions to ext...
Here, a new method is recommended to characterize a new continuous distribution class, named the gen...
This paper considers three special cases: Exponential, Rayleigh and Lindley of a family of generaliz...
In this paper, we use the method of the alpha power transformation to introduce a new generalized al...
We introduce a new flexible modified alpha power (MAP) family of distributions by adding two paramet...
This paper addresses the estimation of the unknown parameters of the alphapower exponential distribu...
In Statistical theory, inclusion of an additional parameter to standard distributions is a usual pra...
In this paper, a new five-parameter model called alpha power exponentiated new Weibull-Pareto distri...
The exponential distribution is a popular statistical distribution to study the problems in lifetime...
In this paper, a new three-parameter lifetime distribution is introduced; the new model is a general...
WOS: 000477600900001In the present paper, we introduce a new form of generalized Rayleigh distributi...
The Fr´echet distribution has several applications in different fields of study and is most commonly...
In this paper, we introduce a new generalization of the power Lindley distribution referred to as th...