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ANALYSIS OF CRITICAL FUNCTIONALITY FOR META ANALOGY VIA PERFORMANCE SPECIFICATION

机译:通过性能规范分析元模拟的关键功能

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This research defines the basis for a new quantitative approach for retrieving useful analogies for innovation based on the relevant performance characteristics of critical functions. Analogy matching is made possible by the novel incorporation of Non Uniform Rational B-spline (NURBs) based metamodels enabling the efficient representation of critical function performance. The concept of critical functionality is central to this research effort. Metamodels of the performance of critical functions, obtained from simulations, engineering models (such as bond graphs) and/or experimental data collections, will be organized into a searchable repository of innovative analogies. This approach will enable multiple analogies to be presented to the designer with a quantified match metric related to the desired performance benefit to the design. The impact of this approach for inspiring novel designs will be measured through controlled experiments measuring the impact of the analogies on the innovation of design. The ultimate research goal will be verified using MetaAnalogy via Performance Specification (MAPS) technique at both the conceptual design phase and throughout the design process. Engineering innovation is critical to meet a vast array of challenges including the grand engineering challenges of the 21st century in the form of energy and environmental solutions.
机译:这项研究定义了一种新的定量方法的基础,该定量方法可根据关键功能的相关性能特征来检索创新的有用类比。通过新颖地合并基于非均匀有理B样条(NURB)的元模型,可以实现类比匹配,从而能够有效表示关键功能的性能。关键功能的概念是这项研究工作的核心。从仿真,工程模型(例如键合图)和/或实验数据集获得的关键功能性能的元模型将被组织到可搜索的创新类比库中。这种方法将使多个类比能够以与设计所需的性能优势相关的量化匹配度量呈现给设计人员。这种方法对启发新颖设计的影响将通过控制实验来衡量,这些实验测量类比对设计创新的影响。最终的研究目标将在概念设计阶段以及整个设计过程中通过性能规范(MAPS)技术使用MetaAnalogy进行验证。工程创新对于应对各种挑战至关重要,包括以能源和环境解决方案的形式应对21世纪的重大工程挑战。

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