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System Reliability Evaluation Based on Convex Combination Considering Operation and Maintenance Strategy

机译:考虑运维策略的凸组合系统可靠性评估

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摘要

The approaches to the system reliability evaluation with respect to the cases, where the components are independent or the components have interactive relationships within the system, were proposed in this paper. Starting from the higher requirements on system operational safety and economy, the reliability focused optimal models of multiobjective maintenance strategies were built. For safety-critical systems, the pessimistic maintenance strategies are usually taken, and, in these cases, the system reliability evaluation has also to be tackled pessimistically. For safety-uncritical systems, the optimistic maintenance strategies were usually taken, and, in these circumstances, the system reliability evaluation had also to be tackled optimistically, respectively. Besides, the reasonable maintenance strategies and their corresponding reliability evaluation can be obtained through the convex combination of the above two cases. With a high-speed train system as the example background, the proposed method is verified by combining the actual failure data with the maintenance data. Results demonstrate that the proposed study can provide a new system reliability calculation method and solution to select and optimize the multiobjective operational strategies with the considerations of system safety and economical requirements. The theoretical basis is also provided for scientifically estimating the reliability of a high-speed train system and formulating reasonable maintenance strategies.
机译:提出了针对组件独立或组件之间具有交互关系的情况进行系统可靠性评估的方法。从对系统运行安全性和经济性的更高要求出发,建立了以可靠性为中心的多目标维护策略的最优模型。对于安全关键型系统,通常采用悲观的维护策略,在这种情况下,还必须悲观地处理系统可靠性评估。对于非关键安全系统,通常采用乐观维护策略,在这种情况下,还必须分别乐观地处理系统可靠性评估。此外,通过上述两种情况的凸组合,可以获得合理的维护策略及其相应的可靠性评估。以高速列车系统为例,结合实际故障数据和维修数据对所提方法进行了验证。结果表明,所提出的研究可以提供一种新的系统可靠性计算方法和解决方案,以在考虑系统安全性和经济要求的情况下选择和优化多目标操作策略。为科学估计高速列车系统的可靠性并制定合理的维护策略也提供了理论基础。

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