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Combination of case-based reasoning and analytical hierarchy process for providing intelligent decision support for product recycling strategies

机译:基于案例的推理和分析层次结构流程相结合,为产品回收策略提供智能决策支持

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摘要

Waste electric and electronic equipment (WEEE) may cause environmental problems during the waste management phase if it is not designed to be environment friendly. Many governments have made considerable efforts to frame policies to reduce the use of hazardous materials and improve a product's recy-clability. In this research, recyclability parameters are introduced to represent a product component's recyclability and to aid a designer in evaluating the component's recyclability. The recyclability index is defined as a measure of the ability of a material to regain its valued properties when subjected to a special recycling process. A method is proposed to determine the recyclability of a material during the design phase. This research method combines case-based reasoning (CBR) and the analytical hierarchy process to simplify the calculation of the recyclability index for a product. Designers can extract experiences from past cases to (1) calculate the recyclability rate of a designed product, (2) determine the possibility of recycling end-of-life (EOL) products, and (3) finalise a recycling plan for EOL products when including a new product in a recycling and treatment system.
机译:如果电气和电子设备(WEEE)的设计不环保,则可能在废物管理阶段引起环境问题。许多政府已经做出了巨大的努力来制定政策以减少有害物质的使用并提高产品的可回收性。在这项研究中,引入了可回收性参数以代表产品组件的可回收性,并帮助设计人员评估组件的可回收性。可回收性指数定义为对材料进行特殊回收处理后重新获得其宝贵性能的能力的度量。提出了一种在设计阶段确定材料可回收性的方法。该研究方法结合了基于案例的推理(CBR)和层次分析法,以简化产品可回收性指标的计算。设计人员可以从过去的案例中提取经验,以(1)计算设计产品的回收率,(2)确定回收报废(EOL)产品的可能性,以及(3)最终确定何时终止EOL产品的回收计划。在回收和处理系统中包括新产品。

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