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An intelligent benchmark-based design for environment system for derivative electronic product development

机译:基于智能基准的衍生电子产品开发环境系统设计

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In recent years, the destruction of the ecological environment and the exhaustion of natural resources have become increasingly severe. The demand for environmental protection has attracted worldwide attention. If a company cannot address changes in ecological law, its products will no longer have access to world markets. For this reason, companies should introduce the concept of design for environment (DfE) to the product development process to alleviate the impacts of a product on the ecological environment throughout the product life cycle.To help companies effectively meet the challenges cited above, this study develops an intelligent benchmark-based DfE system for derivative electronic products. The architecture of the intelligent system includes three parts. In the first part, a back-propagation neural network (BPNN) is used to create the analysis of approximate life cycle inventory (LCI). The first part is utilised to estimate the amounts of hazardous chemical substances produced by the material extraction, manufacturing and usage phases as well as the amounts of energy consumed by the production and usage phases. In the second part, data envelopment analysis (DEA) is applied to develop the models of benchmark-based DfE evaluation for a product and a component or part. The models are used to identify which hazardous chemica 1 substances are excessive and to calculate the needed reductions in the quantities of these hazardous chemical substances. The third part of the intelligent DfE system is used to generate analysis and suggestions for improvement in the design of parts or components. The analysis and suggestion model utilises the second-part analytical results and a BPNN to identify concrete directions for improvement and to generate suggestions that can be used to achieve the ultimate goal of DfE.
机译:近年来,生态环境的破坏和自然资源的枯竭变得越来越严重。环境保护的需求已引起全世界的关注。如果一家公司无法解决生态法律的变化,其产品将无法进入世界市场。因此,公司应在产品开发过程中引入环境设计(DfE)概念,以减轻产品在整个产品生命周期中对生态环境的影响。为了帮助公司有效应对上述挑战,本研究为衍生电子产品开发基于基准的智能DfE系统。智能系统的体系结构包括三个部分。在第一部分中,反向传播神经网络(BPNN)用于创建近似生命周期清单(LCI)的分析。第一部分用于估算材料提取,制造和使用阶段所产生的有害化学物质的量,以及生产和使用阶段所消耗的能源的量。在第二部分中,将数据包络分析(DEA)应用于为产品和组件或零件开发基于基准的DfE评估模型。这些模型用于识别哪些有害化学物质1过量,并计算这些有害化学物质的数量所需的减少量。智能DfE系统的第三部分用于生成分析和建议,以改进零件或组件的设计。分析和建议模型利用第二部分的分析结果和BPNN来确定具体的改进方向,并生成可用于实现DfE最终目标的建议。

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