The Duane reliability growth model has a number of inherent limitations that make it unsuitable for monitoring reliability improvement progress. These limitations are explored and a model based on variance‐stabilizing transformation theory is explained. This model retains the ease of use while also avoiding the disadvantages of the Duane model. It represents a more useful graphical model for portraying reliability improvement at development team meetings. Computer simulations have shown that the new model provides a better fit to the data over the range of Duane slopes normally observed during a reliability growth program. The instantaneous mean time between failures (MTBF) equation for the new model is developed. Computer simulations show that its use results in higher values of instantaneous MTBF than that achieved by the Duane model. The new model also reduces the total test time for achieving a particular specified instantaneous MTBF. Finally, software failure data from an actual project illustrates the calculations and benefits of the new model.
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1 May 2002
Review Article|
May 01 2002
Simulation and comparison of reliability growth models
John Donovan;
John Donovan
School of Engineering, Institute of Technology Sligo, Sligo, Ireland
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Eamonn Murphy
Eamonn Murphy
Department of Mathematics and Statistics, University of Limerick, Limerick, Ireland
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Publisher: Emerald Publishing
Online ISSN: 1758-6682
Print ISSN: 0265-671X
© MCB UP Limited
2002
International Journal of Quality & Reliability Management (2002) 19 (3): 259–271.
Citation
Donovan J, Murphy E (2002), "Simulation and comparison of reliability growth models". International Journal of Quality & Reliability Management, Vol. 19 No. 3 pp. 259–271, doi: https://doi.org/10.1108/02656710210415677
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