Title :
User-Perceived Reliability of Shared Protection Systems with a Finite Number of Repairers
Author :
Ozaki, Hirokazu ; Kara, Atsusi ; Cheng, Zixue
Author_Institution :
Broadband Networks Oper. Unit, NEC Corp., Abiko, Japan
Abstract :
In this paper we investigate the user-perceived availability and Mean Time to Failure (MTTF) of M-for-N shared protection systems with a finite number of repairers. We assume that there are M backup units, N mutually independent users´ (working) units, and C repairers (1 les Cles M + N)We investigate a Markov-chain model (with failure rate lambda per unit, repair rate mu per repairer) that is subject to an FCFS (First Come, First Served) protection switching and FCFS unit re-housing discipline. When a working unit fails, the service for the user of the unit is protected by one of the M protection units if available. If the service is not protected, the user enters a queue waiting for the service restoration. On the other hand, a failed unit immediately enters another queue waiting for repairs. Namely, there are two kinds of queues in the system. An analysis based on state transition diagrams gives a closed-form solution of the user-perceived availability and a recurrence computation method of the use-perceived MTTF. Our numerical examples reveal the effects of the number of repairers.
Keywords :
Markov processes; diagrams; failure analysis; maintenance engineering; queueing theory; reliability theory; FCFS protection switching; FCFS unit rehousing discipline; Markov chain model; backup unit; failure rate per unit; first come first served; mean time to failure; recurrence computation method; repair rate per repairer; repairers finite number; service restoration; shared protection system; state transition diagram; user perceived reliability; working unit; Availability; Broadband communication; Closed-form solution; Computer network reliability; Computer networks; Information technology; National electric code; Protection switching; Switches; Time sharing computer systems; MTTF; a finite number of repairers; availability; shared protection system; user-perceived;
Conference_Titel :
Computer and Information Technology, 2009. CIT '09. Ninth IEEE International Conference on
Conference_Location :
Xiamen
Print_ISBN :
978-0-7695-3836-5
DOI :
10.1109/CIT.2009.44