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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Topological Information Content and Expressiveness of Function Models in Mechanical Design
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Topological Information Content and Expressiveness of Function Models in Mechanical Design

机译:机械设计中功能模型的拓扑信息内容和表达

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摘要

In this paper, two approaches for computing the topological information content of function models in mechanical engineering design are developed and compared. Previously, a metric for computing information content of functions and flows within function models was proposed. Here, this metric is evolved to include the information contained in the connections between flows and functions in a function model. The first approach is based on uniform unconditional probability of a flow connecting any two functions within the model. The second approach is based on additional knowledge that the functions and flows in a model have limited compatibility, thereby, reducing the choices for origin and destination functions for each flow. This additional knowledge is represented using a new graphical representation supported by syntactic grammar rules. Both approaches are then applied to an example function model. Comparison between the approaches shows that the inclusion of this additional knowledge increases the expressiveness by reducing the uncertainty associated with function models.
机译:本文提出并比较了两种在机械工程设计中计算功能模型拓扑信息内容的方法。以前,提出了一种用于计算功能模型中的功能和流程的信息内容的度量。在此,该度量标准已演变为包括功能模型中流程与功能之间的连接所包含的信息。第一种方法基于连接模型中任意两个函数的流的统一无条件概率。第二种方法基于附加的知识,即模型中的功能和流程具有有限的兼容性,从而减少了每个流程的原始功能和目标功能的选择。使用语法语法规则支持的新图形表示法来表示这些附加知识。然后将这两种方法都应用于示例功能模型。两种方法之间的比较表明,通过减少与功能模型相关的不确定性,包含这些附加知识可以提高表达能力。

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