A new one-parameter flexible family with variable failure rate shapes: Properties, inference, and real-life applications

Author:

Mahran Hisham1,Mansour Mahmoud M.23,Abd Elrazik Enayat M.23,Afify Ahmed Z.3

Affiliation:

1. Department of Statistics, Mathematics and Insurance, Ain Shams University, Cairo 11566, Egypt

2. Department of Management Information Systems, Yanbu, Taibah University, Yanbu 46422, Saudi Arabia

3. Department of Statistics, Mathematics, and Insurance, Benha University, Benha 13511, Egypt

Abstract

<abstract> <p>We introduced a flexible class of continuous distributions called the generalized Kavya-Manoharan-G (GKM-G) family. The GKM-G family extended the Kavya-Manoharan class and provided greater flexibility to the baseline models. The special sub-models of the GKM-G family are capable of modeling monotone and non-monotone failure rates including increasing, reversed J shape, decreasing, bathtub, modified bathtub, and upside-down bathtub. Some properties of the family were studied. The GKM-exponential (GKME) distribution was studied in detail. Eight methods of estimation were used for estimating the GKME parameters. The performance of the estimators was assessed by simulation studies under small and large samples. Furthermore, the flexibility of the two-parameter GKME distribution was explored by analyzing five real-life data applications from applied fields such as medicine, environment, and reliability. The data analysis showed that the GKME distribution outperforms other competing exponential models.</p> </abstract>

Publisher

American Institute of Mathematical Sciences (AIMS)

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