Title
Reliability prediction of fault tolerant machining system with reboot and recovery delay.
Abstract
The present paper deals with the reliability analysis of fault tolerant multi-component machining system having multi-warm spares and reboot provisioning. The time-to-breakdown and repair of active/spare units and server are assumed to be exponentially distributed. The reboot process and recovery delay are also counterfeited exponentially distributed. The spectral method is adapted to compute the transient state probabilities of the system states. In order to predict the transient behavior of the system, various performance measures such as reliability function, mean-time-to-failure \(\left( {MTTF} \right)\), etc. have been established. To show the practicability of the developed model, we present numerical results by taking an illustration. The sensitivity of various system parameters on the reliability function and \(MTTF\) has also been examined.
Year
DOI
Venue
2018
10.1007/s13198-017-0680-y
Int. J. Systems Assurance Engineering and Management
Keywords
Field
DocType
Reliability, Fault tolerant system, Active redundancy, Reboot, Recovery delay, Common cause failure
Mean time between failures,Reboot,Spare part,Active redundancy,Machining,Transient state,Fault tolerance,Exponential distribution,Engineering,Reliability engineering
Journal
Volume
Issue
ISSN
9
2
0975-6809
Citations 
PageRank 
References 
0
0.34
12
Authors
4
Name
Order
Citations
PageRank
Chandra Shekhar1199.71
Madhu Jain29825.96
Ather Aziz Raina300.34
Javid Iqbal400.34