基于生命周期评价(LCA)、问题解决创新理论(TRIZ)的绿色产品开发

Clifford C. S. Chan, K. Yu, K. Yung
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引用次数: 6

摘要

每一位设计工程师都有过这样的经验:短的交货时间、明确的规格、充分的设计标准、材料成本、环境法规和产品可靠性限制。然而,为了保持公司的可持续增长,新产品应该及时上市,保持业务增长战略。在这样的环境下,显然需要更全面的多准则决策支持系统来辅助设计者在短时间内开发绿色产品。这凸显了对一个更有效的智能系统的需求,该系统将收集、分析并为设计工程师提供解决方案。总体而言,人工智能(AI)、多准则决策支持(MCDS)系统、专家系统、面向环境的设计(DfE)方法多种多样,但在解决设计早期数据不确定的生命周期评估(LCA)问题和设计早期设计问题方面应用有限。通过考察研究焦点,本研究旨在了解环境影响以及与设计标准的距离。研究绿色产品的生命周期分析,为绿色产品的环境影响和产品可靠性提供基础研究信息。随着更快和更友好的计算机和复杂的软件的可用性,已经有可能使用仿真建模来有效地研究参数。本研究的意义在于利用LCA、问题解决创造性理论(TRIZ)对产品生命周期评价、创造性问题解决者进行测量和检验,构建了产品生命周期评价框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green Product Development by Using Life Cycle Assessment (LCA), Theory of Inventive of Problems Solving (TRIZ)
Every design engineer has an experience of facing common problems of short lead times, clear specification, sufficient design criteria, material costing, environmental regulations, and product reliability constraints. However, for maintaining sustainable growth of a company, a new product should be time-in-market that keeping business growth strategy. Under such environment, it is clear that more comprehensive multi-criteria decision support systems are required to assist the designer to develop green product to achieve a goal in short period of time. This highlights the need for a more effective smart system that will collect, analyze and provide solution to design engineer. Overall, a variety of artificial intelligent (AI), multi-criteria decision support (MCDS) system, expert system, design for environment (DfE) methods are available, however they limited in their application to solve the life cycle assessment (LCA) problems and design problems in early stage of design with uncertain data in early stage of design. By examination the research focus, this study aims an understanding of environmental impact and how far from design criteria. Furthermore, investigating the LCA of green product and generating fundamental research information on their environmental impact and product reliability. With the availability of faster and more user-friendly computers and sophistical software, it has been possible to use simulation modeling to investigate the parameter effectively. The significance of this research is that development of framework by using LCA, theory of Inventive of Problems solving (TRIZ) to measure and examine product life cycle assessment, inventive problems solver.
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