Title :
Evaluation of System Reliabilities for a Maintainable Stochastic-Flow Network
Author :
Lin, Yi-Kuei ; Chang, Ping-Chen
Author_Institution :
Dept. of Ind. Manage., Nat. Taiwan Univ. of Sci. & Technol., Taipei, Taiwan
fDate :
6/1/2012 12:00:00 AM
Abstract :
This paper proposes a performance indicator to evaluate the capability of a maintainable stochastic-flow network (MSFN). This MSFN is required to preserve a minimal service level so that it can send d units of data or commodity from the source to the sink through multiple paths within time T. The proposed system reliability performance indicator quantifies the probability that a MSFN delivers a capacity level above the minimal service level with a budget no greater than B. Two procedures are integrated in the proposed algorithm: a procedure to estimate system reliability, and an adjusting procedure that utilizes the branch-and-bound approach for exact system reliability. The estimated system reliability with lower and upper bounds, and the exact system reliability, are then computed by applying the recursive sum of disjoint products (RSDP) algorithm.
Keywords :
maintenance engineering; reliability; tree searching; branch-and-bound approach; lower bound; maintainable stochastic-flow network; recursive sum of disjoint products algorithm; system reliabilities; system reliability performance indicator; upper bound; Capacity planning; Computational modeling; Computer network reliability; Maintenance engineering; Reliability; Vectors; Branch-and-bound approach; maintainable stochastic-flow network (MSFN); minimal service level; system reliability;
Journal_Title :
Reliability, IEEE Transactions on
DOI :
10.1109/TR.2012.2196170