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A Statistical Approach to Ranking Similarities of Three Function Structure Groups Using Directed Graphs

机译:使用有向图的三个函数结构组相似度的统计方法

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Prior efforts in the study of engineering design employed various approaches to decompose product design. Design engineers use functional representation, and more precisely function structures, to define a product's functionality. However, significant barriers remain to objectively quantifying the similarity between two function structures, even for the same product when developed by multiple designers. For function-structure databases this means that function-structures are implicitly categorized leaving the possibility of incorrect categorization and reducing efficacy of returned analogous correlations. Improvements to efficacy in database organization and queries are possible by objectively quantifying the similarity between function structures. The proposed method exploits fundamental properties of function-structures and design taxonomies. We convert function-structures into directed graphs (digraphs) and equivalent adjacency matrices. The conversion maintains the directed (function →flow →function) progression inherent to function-structures and enables the transformation of the function-structure into a standardized graph. For design taxonomies (e.g. D-APPS), graph nodes represent flows in a consistent (but arbitrary) ordering. By exploiting the directional properties of function-structures and defining the flows as the graphical nodes, the objective and standardized comparison of two function-structures becomes feasible. We statistically quantify the association between digraphs using the Pearson Product Moment Correlation (PPMC)for both within-group and between-group comparisons. The method was tested on three product types (ball thrower, food processor, and an ice cream maker) with function-structures defined by various designers. The method suggested herein is provided as a proof-of-concept with suggested verification and validation approaches for further development.
机译:在工程设计研究中,先前的努力采用了各种方法来分解产品设计。设计工程师使用功能表示(更精确地说是功能结构)来定义产品的功能。但是,即使对于由多个设计师开发的同一产品,客观地量化两个功能结构之间的相似性仍然存在很大的障碍。对于功能结构数据库,这意味着对功能结构进行了隐式分类,从而留下了错误分类的可能性,并降低了返回的相似相关性的功效。通过客观地量化功能结构之间的相似性,可以提高数据库组织和查询的效率。所提出的方法利用了功能结构和设计分类法的基本特性。我们将功能结构转换为有向图(有向图)和等效的邻接矩阵。转换可保持功能结构固有的定向(功能→流→功能)级数,并使功能结构转换为标准图形。对于设计分类法(例如D-APPS),图节点以一致(但任意)的顺序表示流。通过利用功能结构的方向特性并将流程定义为图形节点,可以对两种功能结构进行客观和标准化的比较。对于组内和组间比较,我们使用Pearson乘积矩相关性(PPMC)在统计学上量化有向图之间的关联。该方法在三种产品类型(投掷球,食品加工器和冰淇淋机)上进行了测试,具有不同设计师定义的功能结构。本文提出的方法作为概念验证提供,并带有建议的验证和确认方法以供进一步开发。

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