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A knowledge-based approximate life cycle assessment system for evaluating environmental impacts of product design alternatives in a collaborative design environment

机译:基于知识的近似生命周期评估系统,用于评估协同设计环境中产品设计替代方案的环境影响

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摘要

In a competitive and globalized business environment, the need for the green products becomes stronger. To meet these trends, environmental impact assessment besides delivery, cost and quality of products should be considered as an important factor in new product development stage. In this paper, a knowledge-based approximate life cycle assessment system (KALCAS) is developed to assess the environmental impacts of product design alternatives. It aims at improving the environmental efficiency of a product using artificial neural networks, which consist of high-level product attributes and LCA results. The overall framework of a collaborative design environment involving KALCAS is proposed, using engineering solution CO™ based on the distributed object-based modeling and evaluation (DOME) system. This framework allows users to access the product data and other related information on a wide variety of application. This paper explores an approximate LCA of product design alternatives represented by solid models in a collaborative design environment.
机译:在竞争激烈的全球化商业环境中,对绿色产品的需求日益强烈。为了适应这些趋势,除交付,产品成本和质量外,环境影响评估也应被视为新产品开发阶段的重要因素。在本文中,基于知识的近似生命周期评估系统(KALCAS)被开发来评估产品设计替代方案对环境的影响。它旨在使用人工神经网络提高产品的环境效率,其中包括高级产品属性和LCA结果。利用基于分布式对象建模和评估(DOME)系统的工程解决方案CO™,提出了涉及KALCAS的协作设计环境的总体框架。该框架允许用户访问各种应用程序上的产品数据和其他相关信息。本文探讨了在协作设计环境中以实体模型表示的产品设计替代方案的近似LCA。

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