Development of a Bayesian belief network model for quantifying software failure probability of a protection system

  • Chu, T.L.; 
  • Varuttamaseni, A.; 
  • Yue, M.; 
  • Lee, S.J.; 
  • Eom, H.S.; 
  • ... Kim, M.C.; 
  • 외 3명
Citations

SCOPUS

0

초록

A Bayesian Belief Network model for quantifying the probability of failure on demand of a protection system due to software failures is presented. It is based on the assumption that the quality in carrying out the software development activities determines the reliability of the software. The oval BBN model is a generic one that can be applied to any safety critical software. It uses the quality evaluation and debugging data of a specific software program to estimate the number of faults injected and the number of Ihults detected and removed in each phase of the development process. The estimated number of faults is then converted into a software failure probability using a Fault Size Distribution. © 2015 by the American Nuclear Society.

키워드

Bayesian networks; Probability; Probability distributions; Quality control; Safety engineering; Software design; Software reliability; Bayesian belief network models; Development activity; Development process; Probability of failure on demand; Protection systems; Quality evaluation; Safety critical software; Software program; Program debugging
제목
Development of a Bayesian belief network model for quantifying software failure probability of a protection system
저자
Chu, T.L.; Varuttamaseni, A.; Yue, M.; Lee, S.J.; Eom, H.S.; Kang, H.G.; Kim, M.C.; Son, H.S.; Yang, S.
발행일
2015-04
유형
Conference Paper
저널명
International Topical Meeting on Probabilistic Safety Assessment and Analysis, PSA 2015
권
2
페이지
909 ~ 917