具有单一维修容量和任意分布维修时间的多状态系统最优维修策略

Optimal maintenance strategy for multi-state systems with single maintenance capacity and arbitrarily distributed maintenance time

Reliability Engineering and System Safety · 2021
被引 36
ABS 3

中文导读

研究了维修能力有限(一次只能修一个部件)且维修时间可任意分布的多状态系统,用马尔可夫链建模,以可用度或期望性能为目标、单位时间平均维修成本为约束,用遗传算法求解最优维修策略。

Abstract

In engineering scenarios, failures of some components in a system may not always lead to the failure of an entire system. In such cases, the system can continuously operate while some components are being repaired. On the other hand, due to limited maintenance capacity, such as manpower and/or repair facility, maintenance actions can only be executed serially rather than in parallel. In this study, a new maintenance optimization problem for multi-state systems with single maintenance capacity is studied. The homogeneous continuous-time Markov process is used to characterize the deterioration of multi-state components in a system. In contrast to the exponential assumption for the distribution of maintenance time in most reported works, the time for each maintenance task can be arbitrarily distributed in our study. The embedded Markov chain is constructed to model the state transition process of a system by introducing decision epochs. Two optimization problems are formulated by treating either the stationary availability or the expected performance capacity of a system as an objective under the constraint of the average maintenance cost per unit time. The genetic algorithm is customized to resolve the resulting optimization problems. An illustrative example is given to demonstrate the effectiveness of the proposed method.

可靠性工程维修优化马尔可夫过程遗传算法系统工程