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A hybrid DBH-VNS for high-end equipment production scheduling with machine failures and preventive maintenance activities

机译:具有机器故障和预防性维护活动的高端设备生产计划的混合DBH-VNS

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摘要

The high-end equipment features with high value, complicated manufacturing process, and high status, and it thus brings a huge challenge to increase reliability, quality, and productivity during the production. In order to tackle this challenge and achieve automation, integration, and intelligence this paper proposes a hybrid metaheuristic for an integrated order scheduling and maintenance planning model with position-based processing time, parallel-batching processing, and multiple manufacturers. During the production, the continuous operation of the machine increases the probability of failure, and the repair work can eliminate the failure For each order, we derive some useful lemmas and develop an optimal algorithm to schedule jobs within it. Then, given the order assignment and sequence in the manufacturers, we propose a dynamic programing algorithm to make the decision on the maintenance planning. Subsequently, the investigated problem is proved to be NP-hard, thus, we propose a hybrid discrete black hole algorithm and variable neighborhood search (DBH-VNS) approach to solve the integrated problem. Some improvements are integrated into the proposed algorithm to obtain the competitive results, which include discrete encoding-based population updating scheme, the modified neighborhoods, and the VNS-based local search. Finally, we conduct computational experiments and the results demonstrate the effectiveness and validity of the proposed hybrid metaheuristic. (C) 2020 Elsevier B.V. All rights reserved.
机译:高端设备价值高、制造工艺复杂、地位高,给生产过程中提高可靠性、质量和生产率带来了巨大挑战。为了应对这一挑战,实现自动化、集成化和智能化,本文提出了一种基于位置的加工时间、并行批处理和多制造商的集成订单调度和维护计划模型的混合元启发式算法。在生产过程中,机器的连续运行增加了故障概率,维修工作可以消除每个订单的故障,我们推导了一些有用的引理,并开发了一个优化算法来调度其中的作业。然后,考虑到制造商的订单分配和顺序,我们提出了一种动态规划算法来进行维修计划的决策。随后,研究问题被证明是NP难问题,因此,我们提出了一种混合离散黑洞算法和可变邻域搜索(DBH-VNS)方法来解决该集成问题。为了获得有竞争力的结果,该算法进行了一些改进,包括基于离散编码的种群更新方案、改进的邻域和基于VNS的局部搜索。最后,我们进行了计算实验,结果证明了所提出的混合元启发式算法的有效性和有效性。(C) 2020爱思唯尔B.V.版权所有。

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