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Engineering parameter selection for design optimization during preliminary design

机译:在初步设计期间选择用于优化设计的工程参数

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Matrix methods such as the House of Quality are useful as a first step in organizing the information relating product attributes to engineering parameters. However, they frequently result in a large number of elements, making it very difficult to focus attention on elements that bring maximum benefits. This paper presents a method for reducing a large set of engineering parameters to a more efficient subset. The method proposed first quantifies the values in the relationship matrix using indifference statements, A set of rules is then applied to the relationship matrix to redefine, separate, combine and eliminate some engineering parameters and to account for the controllability and quantifiability of engineering parameters. These adjusted values are then used in an integer programming formulation to identify the subset of engineering parameters that offers the greatest potential for cost control. This is where product development, experimental and optimization efforts should be focused. An example of a new air pollution control system illustrates the method. The most efficient set of engineering parameters are identified, which are then defined as decision variables in a cost-minimization model. The optimal design identified by the method significantly reduces cost, compared with both the original product configuration and with the configuration resulting from a reasonable (but ad hoc) attempt at reducing the number of engineering parameters in the original House of Quality.
机译:诸如房屋质量之类的矩阵方法对于组织将产品属性与工程参数相关的信息的第一步非常有用。但是,它们经常导致大量要素,因此很难将注意力集中在带来最大收益的要素上。本文提出了一种将大量工程参数减少为更有效子集的方法。提出的方法首先使用无差异语句对关系矩阵中的值进行量化,然后将一组规则应用于关系矩阵以重新定义,分离,组合和消除一些工程参数,并考虑工程参数的可控性和可量化性。然后,将这些调整后的值用于整数编程公式中,以识别可提供最大成本控制潜力的工程参数子集。这是产品开发,实验和优化工作的重点。一种新的空气污染控制系统的示例说明了该方法。确定最有效的工程参数集,然后将其定义为成本最小化模型中的决策变量。与原始产品配置以及由于合理(但即席)尝试减少原始质量之屋中的工程参数数量而产生的配置相比,该方法确定的最佳设计可显着降低成本。

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