A New Modification of Shanker Distribution with Applications to Increasing Failure Rate Data

  • Harrison O. Etaga Department of Statistics, Faculty of Physical Sciences, Nnamdi Azikiwe University, Awka, Nigeria
  • Ekwuribe C. Celestine Department of Statistics, Abia State Polytechnic, Aba, Nigeria
  • Chrisogonus K. Onyekwere Department of Statistics, Faculty of Physical Sciences, Nnamdi Azikiwe University, Awka, Nigeria
  • Ifunanya L. Omeje Department of Statistics, Faculty of Physical Sciences, Nnamdi Azikiwe University, Awka, Nigeria
  • Mmesoma P. Nwankwo Department of Statistics, Faculty of Physical Sciences, Nnamdi Azikiwe University, Awka, Nigeria
  • Dorathy O. Oramulu Department of Statistics, Faculty of Physical Sciences, Nnamdi Azikiwe University, Awka, Nigeria
  • Okechukwu J. Obulezi Department of Statistics, Faculty of Physical Sciences, Nnamdi Azikiwe University, Awka, Nigeria
Keywords: exponential distribution, model fitting, Shanker distribution, XShanker distribution

Abstract

In this paper, a new distribution is proposed by mixing the exponential distribution and the Shanker distribution with a mixing proportion being the same as those that yielded the Shanker distribution. The proposed distribution is referred to as the XShanker distribution. The distributional properties of the XShanker distribution namely, quantile function, moments and their associated measures,the mode, moment generating function, characteristic function, distribution of order statistics, and entropy are derived and studied. The reliability analysis shows that the failure rate is a strictly increasing function. The parameter of the model was estimated using the maximum likelihood function. We illustrated the usefulness of XShanker distribution using data on waiting times of 100 bank customers and vinyl chloride from clean ungradient ground-water monitoring wells in (g/L).

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Published
2023-09-15
How to Cite
Etaga, H. O., Celestine, E. C., Onyekwere, C. K., Omeje, I. L., Nwankwo, M. P., Oramulu, D. O., & Obulezi, O. J. (2023). A New Modification of Shanker Distribution with Applications to Increasing Failure Rate Data. Earthline Journal of Mathematical Sciences, 13(2), 509-526. https://doi.org/10.34198/ejms.13223.509526
Section
Articles

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