Publication | Closed Access
Design for life-cycle profit with simultaneous consideration of initial manufacturing and end-of-life remanufacturing
47
Citations
24
References
2013
Year
Supply Chain OptimizationEngineeringIndustrial EngineeringLife Cycle CostingLife Cycle ManagementSustainable DesignOperations ResearchSystems EngineeringEco-designLife-cycle ProfitNew ProductsLife-cycle EngineeringDesignManufacturing PlanningSimultaneous ConsiderationInitial ManufacturingProduct Life CycleInteger ProgrammingProduction PlanningIndustrial DesignBusinessLife Cycle AssessmentDesign UpgradesSustainable ProductionLife Cycle
Remanufacturing is emerging as a promising solution for achieving green, profitable businesses. This article considers a manufacturer that produces new products and also remanufactured versions of the new products that become available at the end of their life cycle. For such a manufacturer, design decisions at the initial design stage determine both the current profit from manufacturing and future profit from remanufacturing. To maximize the total profit, design decisions must carefully consider both ends of product life cycle, i.e. manufacturing and end-of-life stages. This article proposes a decision-support model for the life-cycle design using mixed-integer nonlinear programming. With an aim to maximize the total life-cycle profit, the proposed model searches for an (at least locally) optimal product design (i.e. design specifications and the selling price) for the new and remanufactured products. It optimizes both the initial design and design upgrades at the end-of-life stage and also provides corresponding production strategies, including production quantities and take-back rate. The model is extended to a multi-objective model that maximizes both economic profit and environmental-impact saving. To illustrate, the developed model is demonstrated with an example of a desktop computer.
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