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Journal ArticleDOI

A Lagrangian relaxation based approach to schedule asset overhaul and repair services

TLDR
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.
Abstract
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 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. 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.

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Citations
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Journal ArticleDOI

Building Energy Management: Integrated Control of Active and Passive Heating, Cooling, Lighting, Shading, and Ventilation Systems

TL;DR: Numerical simulation results show that DP-derived heuristic rules are developed to coordinate shading blinds and natural ventilation, with simplified optimization strategies for HVAC and lighting systems, and can effectively reduce energy costs and improve human comfort.
Journal ArticleDOI

Dynamic pricing for new and remanufactured products in a closed-loop supply chain

TL;DR: This study deals with managing two differentiated versions of the same product by developing analytical models using Lagrangean relaxation and dynamic programming schemes and shows that the proposed pricing strategy is an effective mechanism in rendering a greater profit stream during the product lifecycle.
Journal ArticleDOI

A hybrid simulation optimization method for production planning of dedicated remanufacturing

TL;DR: A simulation model with a prioritized stochastic batch arrival mechanism is proposed and the CEGA algorithm is developed to optimize the production planning and control policies for dedicated remanufacturing.
Journal ArticleDOI

A data-driven simulation to support remanufacturing operations

TL;DR: This research develops a data-driven simulation approach to predict material flow behaviour within remanufacturing operations, by utilising data from digital manufacturing systems to update and automatically modify the simulation constructs to reflect the real world or planned system.
Journal ArticleDOI

A systematic literature review of remanufacturing scheduling

TL;DR: In this article, the authors systematically organize and review peer-reviewed journals up to July 2011 to access progress in the scheduling of remanufacturing operations, including reverse material requirements planning.
References
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Book

Scheduling: Theory, Algorithms, and Systems

TL;DR: Scheduling will serve as an essential reference for professionals working on scheduling problems in manufacturing and computing environments and Graduate students in operations management, operations research, industrial engineering and computer science will find the book to be an accessible and invaluable resource.
Journal ArticleDOI

Production planning and control for remanufacturing: industry practice and research needs

TL;DR: In this paper, the authors report on managerial remanufacturing practices via a survey of production planning and control activities at manufacturing firms in the United States and identify and discuss seven complicating characteristics that require significant changes in production planning.
Journal ArticleDOI

Robust scheduling of a two-machine flow shop with uncertain processing times

TL;DR: A measure of schedule robustness that explicitly considers the risk of poor system performance over all potential realizations of job processing times is presented and results indicate that robust schedules provide effective hedges against processing time uncertainty while maintaining excellent expected makespan performance.
Journal ArticleDOI

Surrogate gradient algorithm for Lagrangian relaxation

TL;DR: The surrogate subgradient method is developed, where a proper direction can be obtained without solving optimally all the subproblems, and the directions are smooth for problems of large size.
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