A two-unit priority standby system subject to random shocks and Releigh failure-time distribution

Author:

Gupta Rakesh,Chaudhary Alka

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Surfaces, Coatings and Films,Safety, Risk, Reliability and Quality,Condensed Matter Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Reference6 articles.

1. Optimal replacement with semi-Markov shock models using discounted cost;Feldman;Math. Ops. Res.,1977

2. Gupta, R. and Bansal, S. ‘Cost analysis of a 3-unit standby system subject to random shock and linearly increasing failure rate’. Accepted for publication in the International Journal of Reliability Engineering and System Safety.

3. Multivariate Shock Models for Distributions with increasing hazard rate average;Marshal;Ann. Prob.,1979

4. One unit reliability system subject to random shocks and preventive maintenance;Murari;Microelectron Reliab.,1988

5. Stochastic behaviour of a two unit priority standby redundant system with repair;Nakagawa;Microelectron Reliab.,1975

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1. Bayesian Study of a Continuous Parametric Markov Chain Model of a Three Identical Unit Cold Standby System with Random Shocks;International Journal of Agricultural and Statistical Sciences;2023-06

2. Some Discrete Parametric Markov–Chain System Models to Analyze Reliability;Advances in Reliability, Failure and Risk Analysis;2023

3. Stochastic Behavior of a Two-Unit Cold Standby Redundant System Under Poisson Shocks;Arabian Journal for Science and Engineering;2017-04-12

4. Reliability Evaluation for A Class of Multi-Unit Cold Standby Systems under Poisson Shocks;Communications in Statistics - Theory and Methods;2015-08-03

5. Classical and Bayesian analysis of reliability characteristics of a two-unit parallel system with Weibull failure and repair laws;International Journal of System Assurance Engineering and Management;2013-04-06

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