考虑自修复行为的多状态缓冲串联系统维护策略与缓冲容量联合优化

IF 9.4 1区 工程技术 Q1 ENGINEERING, INDUSTRIAL
Yinghao Meng , Faqun Qi , Bowen Liu , Zhen Yin , Shuwen Ye , Haosen Zhang
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引用次数: 0

摘要

研究了一种具有多状态的多状态缓冲串行系统。与以往的研究主要关注固定缓冲能力或忽视内部退化与多层次外部冲击之间的相互作用不同,本研究引入了一个整合这些方面的综合框架。考虑了内部退化与外部冲击之间的竞争失效过程。根据外部冲击的属性、大小和对内部退化的具体影响,外部冲击可分为退化冲击、大冲击和失效冲击。提出了多层自修复机制,量化了自修复行为的不确定性,并与机器可靠性和维修所需时间相关联,分析了不完全维修所需时间。基于一种独特的分割算法,将给定的总时间段划分为一系列相互独立的子时间段,提出了多重堆叠维护的最小期望成本率(MECRMSM)框架。讨论了两个机器和缓冲器在每个子时间段内的所有可能情况,并计算了系统在总时间段内的期望成本率。通过共同优化维护阈值和缓冲容量,在保证系统可靠性的同时,实现系统成本最小化的解决方案。最后,通过三个算例验证了所提框架和算法的有效性,突出了其在不同运行条件下动态平衡维护策略和缓冲容量的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joint optimization of maintenance strategy and buffer capacity for a multi-state buffered serial system considering self-repair actions
This paper investigates a multi-state buffered serial system with machines experiencing multiple states. Unlike previous studies that primarily focus on fixed buffer capacities or ignore the interaction between internal degradation and multi-level external shocks, this work introduces a comprehensive framework that integrates these aspects. The competitive failure process between internal degradation and external shocks is considered. External shocks are classified into degradation, large, and failure shocks based on their attributes, sizes, and specific impact on internal degradation. The multi-layer self-repair mechanism is proposed to quantify the uncertainty of the self-repair actions, and correlated with machine reliability and time required for maintenance, the time required for imperfect maintenance is analyzed. By dividing a given total time period into a series of mutually independent sub time periods based on a unique segmentation algorithm, the Minimum Expected Cost Rate for Multiple Stacked Maintenance (MECRMSM) framework is presented. All possible situations of the two machines and buffer are discussed within each sub-time period, and the expected cost rate of the system within the total time period is calculated. The solution for minimizing system costs while maintaining reliability is provided by jointly optimizing the maintenance threshold and buffer capacity. Finally, the effectiveness of the proposed framework and algorithm is demonstrated through three numerical cases, which highlight its ability to dynamically balance maintenance strategies and buffer capacity under varying operational conditions.
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来源期刊
Reliability Engineering & System Safety
Reliability Engineering & System Safety 管理科学-工程:工业
CiteScore
15.20
自引率
39.50%
发文量
621
审稿时长
67 days
期刊介绍: Elsevier publishes Reliability Engineering & System Safety in association with the European Safety and Reliability Association and the Safety Engineering and Risk Analysis Division. The international journal is devoted to developing and applying methods to enhance the safety and reliability of complex technological systems, like nuclear power plants, chemical plants, hazardous waste facilities, space systems, offshore and maritime systems, transportation systems, constructed infrastructure, and manufacturing plants. The journal normally publishes only articles that involve the analysis of substantive problems related to the reliability of complex systems or present techniques and/or theoretical results that have a discernable relationship to the solution of such problems. An important aim is to balance academic material and practical applications.
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