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首页> 外文期刊>Information, Knowledge, Systems Management 1389-1995 >A model-based system for the classification and analysis of materials
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A model-based system for the classification and analysis of materials

机译:基于模型的材料分类和分析系统

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摘要

To build model-based systems capable of emulating the scientist's or engineer's way of reasoning about a given physical domain requires methods for automating the formulation or selection of a model which adequately captures the knowledge needed for solving a specific problem. To find and exploit such models requires the use and integration of different kinds of knowledge, formalisms and methods. This paper describes a system which aims at reasoning automatically about visco-elastic materials from a mechanical point of view. It integrates both domain-specific and domain-independent knowledge in order to classify and analyse the mechanical behaviour of materials. The classification task is based on qualitative knowledge, whereas the analysis of a material is performed at a quantitative level and is based on numerical simulation. The key ideas of the work are to automatically generate a library of models of ideal materials and their corresponding qualitative responses to standard experiments; to classify an actual material by selecting from within the library a class of models whose simulated qualitative behaviours towards standard loads match the observed behaviours; to identify a quantitative model of the material, and then to analyse the material by simulating its behaviour on any load. Each model in the library is automatically generated in two different forms; at the lowest level, as a symbolic description and, at a mathematical level, as an ordinary differential equation. This paper mainly concentrates on the methods and algorithms of model generation and qualitative simulation.
机译:为了构建能够模拟科学家或工程师对给定物理域的推理方式的基于模型的系统,需要使模型的制定或选择自动化的方法,该方法可以充分捕获解决特定问题所需的知识。要找到和利用这样的模型,就需要使用和整合各种知识,形式主义和方法。本文介绍了一种旨在从机械角度自动推理粘弹性材料的系统。它集成了特定领域知识和独立于领域的知识,以便对材料的机械行为进行分类和分析。分类任务基于定性知识,而材料的分析则在定量级别上进行,并且基于数值模拟。这项工作的关键思想是自动生成理想材料模型库以及它们对标准实验的相应定性反应;通过从库中选择一类模型来对实际材料进行分类,这些模型的模拟定性行为对标准载荷的行为与观察到的行为相匹配;确定材料的定量模型,然后通过模拟材料在任何负载下的行为来分析材料。库中的每个模型都以两种不同的形式自动生成。在最低级别上作为符号描述,在数学级别上作为常微分方程。本文主要集中在模型生成和定性仿真的方法和算法上。

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