Open Journal of Statistics

Volume 4, Issue 9 (October 2014)

ISSN Print: 2161-718X   ISSN Online: 2161-7198

Google-based Impact Factor: 0.53  Citations  

Two-Sample Bayesian Predictive Analyses for an Exponential Non-Homogeneous Poisson Process in Software Reliability

HTML  XML Download Download as PDF (Size: 2544KB)  PP. 742-750  
DOI: 10.4236/ojs.2014.49069    2,817 Downloads   3,516 Views  Citations

ABSTRACT

The Goel-Okumoto software reliability model is one of the earliest attempts to use a non-homogeneous Poisson process to model failure times observed during software test interval. The model is known as exponential NHPP model as it describes exponential software failure curve. Parameter estimation, model fit and predictive analyses based on one sample have been conducted on the Goel-Okumoto software reliability model. However, predictive analyses based on two samples have not been conducted on the model. In two-sample prediction, the parameters and characteristics of the first sample are used to analyze and to make predictions for the second sample. This helps in saving time and resources during the software development process. This paper presents some results about predictive analyses for the Goel-Okumoto software reliability model based on two samples. We have addressed three issues in two-sample prediction associated closely with software development testing process. Bayesian methods based on non-informative priors have been adopted to develop solutions to these issues. The developed methodologies have been illustrated by two sets of software failure data simulated from the Goel-Okumoto software reliability model.

Share and Cite:

Akuno, A. , Orawo, L. and Islam, A. (2014) Two-Sample Bayesian Predictive Analyses for an Exponential Non-Homogeneous Poisson Process in Software Reliability. Open Journal of Statistics, 4, 742-750. doi: 10.4236/ojs.2014.49069.

Cited by

[1] A New Method of Model Combination Based on the NHPP Software Reliability Models
ICMSS 2018 Proceedings of the 2018 2nd International Conference on Management Engineering, Software Engineering and Service Sciences, 2018
[2] Regression Approach to Parameter Estimation of an Exponential Software Reliability Model
2016

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.