DocumentCode :
3601459
Title :
Multi-Valued Decision Diagram-Based Reliability Analysis of k -out-of- n Cold Standby Systems Sub
Author :
Qingqing Zhai ; Liudong Xing ; Rui Peng ; Jun Yang
Author_Institution :
Sch. of Reliability & Syst. Eng., Beihang Univ., Beijing, China
Volume :
64
Issue :
4
fYear :
2015
Firstpage :
1310
Lastpage :
1324
Abstract :
To improve the system reliability while conserving the limited system resources, cold standby sparing is often used. In computing tasks, because active components fail randomly, and the standby component has to pick up the mission task whenever required, scheduled backups are often implemented to save the completed portions of the task. The backups can facilitate an effective system recovery where the standby component can take over the mission task from the last backup point instead of resuming the mission task from the very beginning. This paper considers a k-out-of- n cold standby system subject to scheduled backups, where k components are online and operating, with the remaining components waiting in the unpowered, cold standby mode. Whenever an online component fails, a cold standby component is activated to take over the mission task from the last backup point. The backup intervals are deterministic, but can be even or uneven. As the component may fail due to an imperfect switching from the standby state to the fully powered up state, the switching failure is also considered in the system model. A multi-valued decision diagram (MDD)-based analytical approach is proposed to evaluate the reliability of the considered system, and its complexity is analyzed. The proposed method is applicable to systems with non-identical components following arbitrary lifetime distributions. Examples are given to illustrate the MDD-based method. The correctness and efficiency of the proposed method are verified using Monte Carlo simulations.
Keywords :
Monte Carlo methods; computational complexity; decision diagrams; failure analysis; multivalued logic; reliability theory; MDD-based analytical approach; Monte Carlo simulations; arbitrary lifetime distributions; backup point; cold standby sparing; complexity analysis; deterministic backup interval; even backup interval; fully-powered up state; k-out-of-n cold standby systems; mission task; multivalued decision diagram-based reliability analysis; nonidentical components; online component failure; scheduled backups; standby component; switching failure; system recovery; system reliability improvement; uneven backup interval; Analytical models; Educational institutions; Equations; Mathematical model; Redundancy; Switches; $k$-out-of-$n$ cold standby; imperfect switch; multi-valued decision diagram; scheduled backup;
fLanguage :
English
Journal_Title :
Reliability, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9529
Type :
jour
DOI :
10.1109/TR.2015.2404891
Filename :
7051295
Link To Document :
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