率随机几何过程及其应用

IF 1.9 4区 管理学 Q3 OPERATIONS RESEARCH & MANAGEMENT SCIENCE
Majid Asadi, Shaomin Wu
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引用次数: 0

摘要

几何过程已在多个学科中得到广泛研究,并应用于可靠性、维护和保修成本分析等领域。在维护策略优化中的应用中,几何过程假定维修效果恒定,其过程率也恒定。然而,在实践中,维修效果可能因时间而异,因此用随机变量来描述效果会更好。受此启发,本文提出了几何过程的一种新变体,即速率随机几何过程(RRGP)。然后研究了 RRGP 的概率特性。利用最大似然法估计 RRGP 的参数。给出的数值示例显示了该方法在维护策略优化和拟合真实世界故障数据集方面的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A rate randomized geometric process with applications
The geometric process has been widely studied in various disciplines and applied in reliability, maintenance and warranty cost analysis, among others. In its applications in maintenance policy optimisation, the geometric process assumes constant repair effectiveness by its process rate. Nevertheless, in practice, maintenance effectiveness may differ from time to time and can therefore be better depicted by a random variable. Motivated by this argument, this paper proposes a new variant of the geometric process, which is referred to as the rate randomized geometric process (RRGP). The probabilistic properties of the RRGP are then investigated. The maximum likelihood method is utilised to estimate the parameters of the RRGP. Numerical examples are given to show its applicability in both maintenance policy optimization and fitting real-world failure datasets.
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来源期刊
Naval Research Logistics
Naval Research Logistics 管理科学-运筹学与管理科学
CiteScore
4.20
自引率
4.30%
发文量
47
审稿时长
8 months
期刊介绍: Submissions that are most appropriate for NRL are papers addressing modeling and analysis of problems motivated by real-world applications; major methodological advances in operations research and applied statistics; and expository or survey pieces of lasting value. Areas represented include (but are not limited to) probability, statistics, simulation, optimization, game theory, quality, scheduling, reliability, maintenance, supply chain, decision analysis, and combat models. Special issues devoted to a single topic are published occasionally, and proposals for special issues are welcomed by the Editorial Board.
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