You are required to read and agree to the below before accessing a full-text version of an article in the IDE article repository.

The full-text document you are about to access is subject to national and international copyright laws. In most cases (but not necessarily all) the consequence is that personal use is allowed given that the copyright owner is duly acknowledged and respected. All other use (typically) require an explicit permission (often in writing) by the copyright owner.

For the reports in this repository we specifically note that

  • the use of articles under IEEE copyright is governed by the IEEE copyright policy (available at http://www.ieee.org/web/publications/rights/copyrightpolicy.html)
  • the use of articles under ACM copyright is governed by the ACM copyright policy (available at http://www.acm.org/pubs/copyright_policy/)
  • technical reports and other articles issued by M‰lardalen University is free for personal use. For other use, the explicit consent of the authors is required
  • in other cases, please contact the copyright owner for detailed information

By accepting I agree to acknowledge and respect the rights of the copyright owner of the document I am about to access.

If you are in doubt, feel free to contact webmaster@ide.mdh.se

Modeling uncertainties in the estimation of software reliability – a pragmatic approach


Publication Type:

Conference/Workshop Paper

Venue:

International Conference on Secure Software Integration and Reliability Improvement (SSIRI)- Best paper award

Publisher:

IEEE


Abstract

The increasing usage of computer based systems for safety critical operations in applications such as nuclear, space, and automotive systems demands a systematic way of estimating software reliability. The high reliability requirements of safety critical software systems make this task imperative as well. Due to the specifics of software systems and the lack of any universally accepted models it is very difficult to predict the true reliability value of the system. Unfortunately none of the existing software reliability models neither acknowledge nor address this fact. There exist multiple uncertainty factors that influence reliability estimation of safety critical software systems. In this paper, we first define the scope of the important factors in the reliability models and describe a new approach to obtain a realistic estimate for system reliability. For this purpose, we consider different kinds of reliability models also taking into account the system architecture. The influence of uncertainty factors in the models is analyzed to obtain uncertainty bounds. They show an interval, where the true reliability should lie within it. This way system architects may use a so-called worst-case reliability estimation, given by the lower interval bound, for system analysis. We also demonstrate our proposed approach with real data taken from safety-critical applications.

Bibtex

@inproceedings{Chandran1399,
author = {Senthil Kumar Chandran and Aleksandar Dimov and Sasikumar Punnekkat},
title = {Modeling uncertainties in the estimation of software reliability – a pragmatic approach},
month = {June},
year = {2010},
booktitle = {International Conference on Secure Software Integration and Reliability Improvement (SSIRI)- Best paper award},
publisher = {IEEE},
url = {http://www.es.mdu.se/publications/1399-}
}