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Enhanced function-means modeling supporting design space exploration

机译:增强的功能均值建模支持设计空间探索

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One problem in incremental product development is that geometric models are limited in their ability to explore radical alternative design variants. In this publication, a function modeling approach is suggested to increase the amount and variety of explored alternatives, since function models (FM) provide greater model flexibility. An enhanced function-means (EF-M) model capable of representing the constraints of the design space as well as alternative designs is created through a reverse engineering process. This model is then used as a basis for the development of a new product variant. This work describes the EF-M model's capabilities for representing the design space and integrating novel solutions into the existing product structure and explains how these capabilities support the exploration of alternative design variants. First-order analyses are executed, and the EF-M model is used to capture and represent already existing design information for further analyses. Based on these findings, a design space exploration approach is developed. It positions the FM as a connection between legacy and novel designs and, through this, allows for the exploration of more diverse product concepts. This approach is based on three steps - decomposition, design, and embodiment - and builds on the capabilities of EF-M to model alternative solutions for different requirements. While the embodiment step of creating the novel product's geometry is still a topic for future research, the design space exploration concept can be used to enable wider, more methodological, and potentially automated design space exploration.
机译:增量产品开发中的一个问题是,几何模型探索基本替代设计变体的能力受到限制。在此出版物中,由于功能模型(FM)提供了更大的模型灵活性,因此建议使用功能建模方法来增加探索的替代方案的数量和种类。通过逆向工程过程创建了一种能够表示设计空间以及替代设计约束的增强功能函数(EF-M)模型。然后将此模型用作开发新产品变型的基础。这项工作描述了EF-M模型代表设计空间并将新颖的解决方案集成到现有产品结构中的能力,并解释了这些能力如何支持对替代设计变体的探索。执行一阶分析,并使用EF-M模型捕获并表示已经存在的设计信息以进行进一步分析。基于这些发现,开发了一种设计空间探索方法。它将FM定位为传统设计与新颖设计之间的联系,并借此探索更多不同的产品概念。这种方法基于三个步骤-分解,设计和实施-并以EF-M的能力为基础,为不同要求的替代解决方案建模。尽管创建新产品的几何形状的实施步骤仍是未来研究的主题,但设计空间探索概念可用于实现更广泛,更方法论和潜在的自动化设计空间探索。

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