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Reliability and Availability Analysis of a Two-Unit Cold Standby System with Imperfect Switching

20253 citationsOpen accessFuture University in Egypt

Abstract

This paper presents a stochastic analysis of a two-unit cold standby system incorporating imperfect switching mechanisms. Each unit operates in one of three states: normal, partial failure, or total failure. Employing Markov processes, the study evaluates system reliability by examining the mean time to failure (MTTF) and steady-state availability metrics. Failure and repair times are assumed to follow exponential distributions, while the switching mechanism is modeled as either perfect or imperfect. The results highlight the significant influence of switching reliability on both MTTF and system availability. This analysis is crucial for optimizing the performance of complex systems, such as thermal power plants, where continuous and reliable operation is imperative. The study also aligns with recent research trends emphasizing the integration of preventive maintenance and advanced reliability modeling approaches to enhance overall system resilience.

Research topics

  • Power System Reliability and Maintenance
  • Reliability and Maintenance Optimization
  • Energy and Environment Impacts

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DOI: 10.3390/axioms14080589

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