Title :
Reliability Analysis of a Two-Unit Standby-Redundant System with Preventive Maintenance
Author_Institution :
Department of Electrical Engineering, University of Southern California, Los Angeles, Calif. 90007; Department of Industrial Engineering, Hiroshima University, Hiroshima, Japan.
Abstract :
We consider a standby-redundant model of two units, where we assume that one unit is operative and the other unit is in standby at time t = 0. If the operative unit fails, a unit in standby is put into preventive maintenance policy of the operative unit to maintain our the preventive maintenance policy of the operative unit to maintain our system with high reliability. Our concern for the system is the time to the first system-down. The Laplace-Stieltjes transform of the time distribution to the first system-down and the mean time to the first system-down are derived by applying the relationship between Markov renewal processes and signal flow graph. Further, the behavior after the system-down is investigated by using the results of Markov renewal processes. Finally, numerical examples are presented for the k-Erlang failure time distributions. The optimal preventive maintenance time is discussed.
Keywords :
Flow graphs; Industrial engineering; Preventive maintenance; Redundancy; Reliability theory; Signal analysis; Time measurement;
Journal_Title :
Reliability, IEEE Transactions on
DOI :
10.1109/TR.1972.5216167