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Aggregated Markov-based reliability analysis of multi-state systems under combined dynamic environments

机译:组合动态环境下基于马尔科夫聚合的多状态系统可靠性分析

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摘要

Reliability of a system may differ greatly when operating under different environments. However, the existing works have either neglected the environment factor in system reliability analysis or considered this factor for binary systems or systems subject to a single environment (parameter). In this paper, we make contributions by modeling a multi-state system operating under hybrid dynamic environments affected by multiple environmental parameters. Different Markov chains with finite states are used to represent the random system behavior and dynamic environments, leading to an aggregated Markov process that models the overall system behavior. An effective approach based on state partitions and aggregations is suggested for assessing the system reliability indexes, including reliability, availability, multi-point availability, and environment-based reliability. A high-pressure homogenizer system is analyzed to demonstrate the proposed model and show the comparison of the reliability of system under fixed and dynamic environment.
机译:在不同环境下运行时,系统的可靠性可能会有很大差异。但是,现有的工作要么在系统可靠性分析中忽略了环境因素,要么在二进制系统或受单一环境(参数)影响的系统中考虑了该因素。在本文中,我们通过对在受多个环境参数影响的混合动态环境下运行的多状态系统进行建模来做出贡献。具有有限状态的不同马尔可夫链用于表示随机系统行为和动态环境,从而导致对整个系统行为进行建模的聚合马尔可夫过程。建议使用一种基于状态分区和聚合的有效方法来评估系统可靠性指标,包括可靠性,可用性,多点可用性和基于环境的可靠性。分析了高压均质机系统,以证明所提出的模型,并显示了在固定和动态环境下系统可靠性的比较。

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