多源退化下同构多部件生产系统调度与视情维修联合决策
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太原科技大学 工业与系统工程研究所

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中图分类号:

TH17

基金项目:

国家自然科学基金项目(72071183) ;太原科技大学研究生联合培养示范基地项目(JD2022010);山西省高等学校人文社会科学重点研究基地项目(20220123);山西省重点研发计划项目(202202100401002;山西省青年科学研究项目(202103021223291)


Scheduling and Condition-Based Maintenance Joint Decision in Homogeneous Multi-Component Production Systems under Multiple Source Degradation
Author:
Affiliation:

Division of Industrial and System Engineering, Taiyuan University of Science and Technology

Fund Project:

The National Natural Science Foundation of China(Grant No. 72071183);Demonstration base project for postgraduate joint training of Taiyuan University of Science and Technology(JD2022010);Key Research Bases Project for Humanities and Social Sciences of Higher Education Institutions in Shanxi(Grant No. 20220123);Key Research and Development projects in Shanxi Province(202202100401002);Shanxi Province Youth Scientific Research Project (202103021223291)

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    摘要:

    在具有关键多部件系统的生产调度过程中,系统退化往往受多方面因素影响. 生产加工期间的载荷, 外部环境的冲击,及部件间的故障相关性都会造成系统不同程度的退化. 因此, 针对多源退化影响下的同构多部件生产系统, 分析生产调度期间其关键部件和系统的退化特征, 并构建相应的系统退化模型. 在此基础上, 提出生产调度与视情维修的联合策略,以调度作业的加工序列和预防性维修阈值为决策变量,最小化总加权期望完成时间为目标,构建考虑多源退化影响下的同构多部件系统生产调度与视情维修联合决策模型. 据此进行部件级的平稳概率和系统级的联合概率的推导, 并给出数值求解方法.在数值实验中, 通过对比不同退化因素影响下联合决策模型的优化结果, 证实在联合决策中考虑多源退化的必要性; 经过参数的敏感度分析,验证该模型的有效性.

    Abstract:

    In the production scheduling process of systems with critical multiple components, system degradation is often influenced by various factors. Loads during production processing, external environmental impacts and the interdependence of component failures can all cause varying degrees of degradation in the system. Therefore, this article analyzes the degradation characteristics of key components and the system during production scheduling under the influence of multiple sources of degradation, and constructs corresponding degradation models. Based on this, a joint strategy for production scheduling and condition-based maintenance is proposed, with the processing sequence of scheduling jobs and preventive maintenance thresholds as decision variables, aiming to minimize the total weighted expected completion time,A joint decision model for production scheduling and condition-based maintenance of a homogeneous multi-component system considering the effects of multiple sources of degradation is constructed. Accordingly, derivations of component-level steady-state probabilities and system-level joint probabilities are conducted, and the numerical solution method is given. In numerical experiments, by comparing the optimization results of the joint decision model under the influence of different degradation factors, the necessity of considering multiple sources of degradation in joint decision-making is demonstrated. Through sensitivity analysis of the parameters, the effectiveness of the model is verified.□□

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引用本文

李姣嫒,毛双新,甘婕,等.多源退化下同构多部件生产系统调度与视情维修联合决策[J].控制与决策,2025,40(1):336-344

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  • 收稿日期:2023-10-08
  • 最后修改日期:2024-07-22
  • 录用日期:2024-04-16
  • 在线发布日期: 2024-05-06
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