@inproceedings{ba8a54fff443492cb623c9733a9d77d1,
title = "Failure behavior analysis of hot standby system based on BDD method",
abstract = "Hot standby technology becomes a popular method for improving the reliability of a crucial component, and a significant system. Considering the failure mechanisms of components, this paper proposes a binary decision diagram-based method for modeling the failure behaviors of hot standby systems. The failure probability of the component what fails firstly among the primary and hot standby component is discussed. We find that under the condition of that one component fails firstly, as time goes by, the transient and cumulative failure probabilities of that the primary and hot standby component fail firstly change. Besides, after one component fails firstly, the reliability of the system sharply decreases and totally depends on the statuses of those remaining functional components. With the help of the method proposed in this paper, more practical work about the maintainability and design optimization can be done.",
author = "Z. Wang and Y. Chen and W. Men and R. Kang",
note = "Publisher Copyright: {\textcopyright} 2018 Taylor \& Francis Group, London.; 28th International European Safety and Reliability Conference, ESREL 2018 ; Conference date: 17-06-2018 Through 21-06-2018",
year = "2018",
language = "英语",
isbn = "9780815386827",
series = "Safety and Reliability - Safe Societies in a Changing World - Proceedings of the 28th International European Safety and Reliability Conference, ESREL 2018",
publisher = "CRC Press/Balkema",
pages = "2441--2448",
editor = "\{van Gulijk\}, Coen and Stein Haugen and Anne Barros and Vinnem, \{Jan Erik\} and Trond Kongsvik",
booktitle = "Safety and Reliability - Safe Societies in a Changing World - Proceedings of the 28th International European Safety and Reliability Conference, ESREL 2018",
}