State space and binary decision diagram models for discrete standby systems with multistate components
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Publication:2110029
DOI10.1016/j.apm.2022.05.045zbMath1505.62505OpenAlexW4281834187WikidataQ114682754 ScholiaQ114682754MaRDI QIDQ2110029
Publication date: 21 December 2022
Published in: Applied Mathematical Modelling (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.apm.2022.05.045
Reliability, availability, maintenance, inspection in operations research (90B25) Inference from stochastic processes (62M99) Applications of Markov renewal processes (reliability, queueing networks, etc.) (60K20)
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Cites Work
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- Reliability modeling of two-unit cold standby systems: a periodic switching approach
- Stochastic orders
- Reliability analysis of a two-unit general parallel system with (\(n-2\)) warm standbys
- Optimal order-replacement policy for a phase-type geometric process model with extreme shocks
- Reliability-based measures for a retrial system with mixed standby components
- Reliability of a multi-state system subject to shocks using phase-type distributions
- On the mean residual life of a \(k\)-out-of-\(n:G\) system with a single cold standby component
- Reliability modeling for a repairable \((k_1, k_2)\)-out-of-\(n\): \(G\) system with phase-type vacation time
- Reliability properties of \(k\)-out-of-\(n\) systems with one cold standby unit
- Reliability analysis of a single warm-standby system subject to repairable and nonrepairable failures
- A reliability system under cumulative shocks governed by a BMAP
- Some new results involving general standby systems
- Applied Discrete-Time Queues
- Modelling a general standby system and evaluation of its performance
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