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首页> 外文期刊>IEEE transactions on automation science and engineering >A Lagrangian relaxation based approach to schedule asset overhaul and repair services
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A Lagrangian relaxation based approach to schedule asset overhaul and repair services

机译:基于拉格朗日松弛法的计划资产大修和维修服务

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摘要

Overhaul and repair services are important segments of the remanufacturing industry, and are characterized by complicated disassembly, repair and assembly process plans, stochastic operations, and the usage of rotable inventory. In view of today's time-based competition, effectively scheduling such services and managing rotable inventory and uncertainties are becoming imperative to achieve on-time deliveries and low overall costs. In this paper, a novel formulation for overhaul and repair services is presented where key characteristics, such as uncertain asset arrivals and operation processing times, and rotable parts are abstracted to model an overhaul center and multiple repair shops in a distributed framework to reflect organizational structures. Interactions between the overhaul center and repair shops are described by sets of coupling constraints across the organizations. Rotable inventory dynamics is formulated in terms of repair operation completion times and asset assembly beginning times to facilitate minimization of inventory holding costs through scheduling. A solution methodology combining Lagrangian relaxation, stochastic dynamic programming, and heuristics is developed to schedule operations in a coordinated manner to minimize total tardiness, earliness, and inventory holding costs. Additionally, penalty terms associated with coupling constraint violations are introduced to the objective function to improve algorithm convergence and schedule quality, and a surrogate optimization framework is used to overcome the inseparability difficulty caused by the penalty terms. Numerical testing results show that the new approach is computationally effective to handle rotable inventory and uncertainties, and provides high quality schedules with low overall costs for stochastic remanufacturing systems. Note to Practitioners-Overhaul and repair services for jet engines, helicopters, airplanes, are important segments of the remanufacturing industry, and are characterized by complicated disassembly, repair and assembly process plans, stochastic operations, and the usage of rotable inventory. In view of today's highly competitive business climate, effectively scheduling such services and managing rotable inventory and uncertainties are becoming critical to ach- ieve on-time deliveries and low overall costs. In this paper, a novel formulation for overhaul and repair services is presented where key characteristics, such as uncertain asset arrivals and operation processing times, and rotable parts are abstracted to model an overhaul center and multiple repair shops in a distributed framework to reflect organizational structures. A solution methodology based on decomposition and coordination is developed to schedule operations to minimize total tardiness, earliness, and inventory holding costs. Numerical testing results show that the method is computationally efficient for managing rotable inventory and uncertainties, and generates high quality schedules with low overall costs. The value of rotable inventory to reduce tardiness costs and buffer uncertainties is demonstrated, and the robustness of the new method is evaluated by cases with different settings of machine utilization levels and uncertainty levels. The scalability of the method to solve large problems with hundreds of assets is also demonstrated.
机译:大修和维修服务是再制造行业的重要组成部分,其特点是复杂的拆卸,维修和装配过程计划,随机操作以及可动库存的使用。鉴于当今基于时间的竞争,有效地安排此类服务以及管理可动库存和不确定性对于实现准时交付和降低总成本变得至关重要。在本文中,提出了一种新颖的大修和维修服务公式,其中关键特征(例如不确定的资产到达和运营处理时间)和可旋转零件被抽象化,以在分布式框架中对大修中心和多个维修车间进行建模以反映组织结构。大修中心和维修车间之间的相互作用通过整个组织中的一系列耦合约束来描述。根据维修操作的完成时间和资产组装的开始时间来制定可旋转的库存动态,以通过计划来促进最小化库存持有成本。开发了一种结合拉格朗日松弛法,随机动态规划法和启发式法的解决方案方法,以协调的方式调度作业,以最大程度地减少总拖延性,早期性和库存持有成本。另外,将与耦合约束违规相关联的惩罚项引入目标函数以提高算法的收敛性和调度质量,并且使用替代优化框架来克服由惩罚项引起的不可分割的困难。数值测试结果表明,该新方法在计算可循环存货和不确定性方面具有有效的计算能力,并为随机再制造系统提供了高质量计划,而总成本却较低。给从业者的注意事项-喷气发动机,直升机,飞机的大修和维修服务是再制造行业的重要组成部分,其特点是拆卸,维修和组装过程计划复杂,随机操作以及可动库存的使用。鉴于当今竞争激烈的商业环境,有效地安排此类服务以及管理可流动的库存和不确定性对于实现准时交付和降低总体成本变得至关重要。在本文中,提出了一种新颖的大修和维修服务公式,其中关键特征(例如不确定的资产到达和运营处理时间)和可旋转零件被抽象化,以在分布式框架中对大修中心和多个维修车间进行建模以反映组织结构。开发了一种基于分解和协调的解决方案方法,以调度操作,以最大程度地减少总拖延,提前性和库存持有成本。数值测试结果表明,该方法在管理可转储库存和不确定性方面具有计算效率,并且可以生成高质量的计划,而总成本却较低。证明了可减少库存成本以减少拖欠成本和缓冲不确定性的价值,并通过在不同机器利用率水平和不确定性水平设置的情况下评估新方法的鲁棒性。还展示了解决数百个资产的大问题的方法的可伸缩性。

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