2016•American Journal of Mathematical and Management SciencesRequires access

On Randomly Censored Generalized Inverted Exponential Distribution

Renu Garg, Madhulika Dube, Kapil Kumar, Hare Krishna

Open publisher page 24 citations

Abstract

SYNOPTIC ABSTRACTLife testing experiments are conducted to collect lifetime information on patients in survival analysis. The subjects of testing in reliability theory are electronic, electrical, and mechanical devices. Because of time and cost constraints, it is difficult to collect lifetime data on all items, and therefore, the experiment is terminated before its completion. Various types of censoring schemes are used by the practitioners. Random censoring is an important censoring scheme in which the time of censoring is not fixed but taken as random. In this article, we study the generalized inverted exponential distribution under random censoring. Maximum likelihood estimators of the parameters and expected Fisher information under random censoring model are derived. Bayes estimators of the parameters under squared error loss function are obtained using Lindley's approximation and importance sampling methods. Also, highest posterior density credible intervals of the parameters based on importance sampling procedure are constructed. A Monte Carlo simulation study is conducted to compare the performance of various estimators developed. A randomly censored real dataset illustrates the estimation procedures developed in this study.

About this research paper

What this paper is about

SYNOPTIC ABSTRACTLife testing experiments are conducted to collect lifetime information on patients in survival analysis. The subjects of testing in reliability theory are electronic, electrical, and mechanical devices. Because of time and cost constraints, it is difficult to collect lifetime data on all items, and therefore, the experiment is terminated before its completion. Various types of censoring schemes are used by the practitioners. Random censoring is an important censoring scheme in which the time of censoring is not fixed but taken as random. In this article, we study the generalized inverted exponential distribution under random censoring. Maximum likelihood estimators of the parameters and expected Fisher information under random censoring model are derived. Bayes estimators of the parameters under squared error loss function are obtained using Lindley's approximation and importance sampling methods. Also, highest posterior density credible intervals of the parameters based on importance sampling procedure are constructed. A Monte Carlo simulation study is conducted to compare the performance of various estimators developed. A randomly censored real dataset illustrates the estimation procedures developed in this study.

Why it matters

OpenAlex reports 24 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

SYNOPTIC ABSTRACTLife testing experiments are conducted to collect lifetime information on patients in survival analysis. The subjects of testing in reliability theory are electronic, electrical, and mechanical devices. Because of time and cost constraints, it is difficult to collect lifetime data on all items, and therefore, the experiment is terminated before its completion. Various types of censoring schemes are used by the practitioners. Random censoring is an important censoring scheme in which the time of censoring is not fixed but taken as random. In this article, we study the generalized inverted exponential distribution under random censoring. Maximum likelihood estimators of the parameters and expected Fisher information under random censoring model are derived. Bayes estimators of the parameters under squared error loss function are obtained using Lindley's approximation and importance sampling methods. Also, highest posterior density credible intervals of the parameters based on importance sampling procedure are constructed. A Monte Carlo simulation study is conducted to compare the performance of various estimators developed. A randomly censored real dataset illustrates the estimation procedures developed in this study.

Key concepts: Censoring (clinical trials), Estimator, Statistics, Exponential distribution, Mathematics, Bayes' theorem, Exponential function, Monte Carlo method

Related papers

Back to paper searchBrowse research topicsOriginal source
On Randomly Censored Generalized Inverted Exponential Distribution — Research Paper | ScholarLens