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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Semantic and Qualitative Physics-Based Reasoning on Plain-English Flow Terms for Generating Function Model Alternatives
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Semantic and Qualitative Physics-Based Reasoning on Plain-English Flow Terms for Generating Function Model Alternatives

机译:基于语义和定性的物理学推理,用于产生函数模型替代品的普通英语流程

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摘要

In graph-based function models, the function verbs and flow nouns are usually chosen from predefined vocabularies. The vocabulary class definitions, combined with function modeling grammars defined at various levels of formalism, enable function-based reasoning. However, the text written in plain English for the names of the functions and flows is presently not exploited for formal reasoning. This paper presents a formalism (representation and reasoning) to support semantic and physics-based reasoning on the information hidden in the plain-English flow terms, especially for automatically decomposing black box function models, and to generate multiple design alternatives. First, semantic reasoning infers the changes of flow types, flow attributes, and the direction of those changes between the input and output flows attached to the black box. Then, a representation of qualitative physics is used to determine the material and energy exchanges between the flows and the function features needed to achieve them. Finally, a topological reasoning is used to infer multiple options of composing those function features into topologies and to thus generate multiple alternative decompositions of the functional black box. The data representation formalizes flow phases, flow attributes, qualitative value scales for the attributes, and qualitative physics laws. An eight-step algorithm manipulates these data for reasoning. This paper shows four validation case studies to demonstrate the workings of this formalism.
机译:在基于图形的函数模型中,函数动词和流量名词通常从预定义的词汇表中选择。词汇类定义,结合各级形式主义定义的函数建模语法,使能基于功能的推理。但是,目前没有利用以普通英语写入函数和流量的文本以进行正式推理。本文提出了一种形式主义(代表性和推理),以支持在普通英语流动术中隐藏的信息的基于语义和物理学的推理,特别是用于自动分解黑匣子功能模型,并生成多种设计替代品。首先,语义推理是流量类型,流量属性的变化,以及附加到黑盒子的输入和输出流程之间的变化。然后,使用定性物理学的表示来确定流动之间的材料和能量交换和实现它们所需的功能特征。最后,拓扑推理用于推断将这些功能特征的多种选项推断成拓扑,从而产生功能黑匣子的多个替代分解。数据表示将流动阶段,流动属性,属性的定性值尺度形式作出,以及定性物理法。八步算法操纵这些数据以进行推理。本文显示了四项验证案例研究,以证明这种形式主义的运作。

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