首页> 外文OA文献 >Ingénierie systèmes basée sur les modèles appliquée à la gestion et l'intégration des données de conception et de simulation : application aux métiers d'intégration et de simulation de systèmes aéronautiques complexes
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Ingénierie systèmes basée sur les modèles appliquée à la gestion et l'intégration des données de conception et de simulation : application aux métiers d'intégration et de simulation de systèmes aéronautiques complexes

机译:基于模型的系统工程应用于设计和仿真数据的管理和集成:应用于复杂航空系统的集成和仿真交易

摘要

The aim of this doctoral thesis is to contribute to the facilitation of design, integration and simulation activities in the aeronautics industry, but more generally in the context of collaborative complex product development. This objective is expected to be achieved through the use and improvement of digital engineering capabilities. During the last decade, the Digital Mock-Up (DMU) – supported by Product Data Management (PDM) systems – became a key federating environment to exchange/share a common 3D CAD model-based product definition between co-designers. It enables designers and downstream users(analysts) to access the geometry of the product assembly. While enhancing 3D and 2D simulations in a collaborative and distributed design process, the DMU offers new perspectives for analysts to retrieve the appropriate CAD data inputs used for Finite Element Analysis (FEA), permitting hence to speed-up the simulation preparation process. However, current industrial DMUs suffer from several limitations, such as the lack of flexibility in terms of content and structure, the lack of digital interface objects describing the relationships between its components and a lack of integration with simulation activities and data.This PhD underlines the DMU transformations required to provide adapted DMUs that can be used as direct input for large assembly FEA. These transformations must be consistent with the simulation context and objectives and lead to the concept of “Product View” applied to DMUs andto the concept of “Behavioural Mock-Up” (BMU). A product view defines the link between a product representation and the activity or process (performed by at least one stakeholder) that use or generate this representation as input or output respectively. The BMU is the equivalent of the DMU for simulation data and processes. Beyond the geometry, which is represented in the DMU,the so-called BMU should logically link all data and models that are required to simulate the physical behaviour and properties of a single component or an assembly of components. The key enabler for achieving the target of extending the concept of the established CAD-based DMU to the behavioural CAE-based BMU is to find a bi-directional interfacing concept between the BMU and its associated DMU. This the aim of the Design-Analysis System Integration Framework (DASIF) proposed in this PhD. This framework might be implemented within PLM/SLM environments and interoperate with both CAD-DMU and CAE-BMU environments. DASIF combines configuration data management capabilities of PDM systems with MBSE system modelling concepts and Simulation Data Management capabilities.This PhD has been carried out within a European research project: the CRESCENDO project, which aims at delivering the Behavioural Digital Aircraft (BDA). The BDA concept might consist in a collaborative data exchange/sharing platform for design-simulation processes and models throughout the development life cycle of aeronautics products. Within this project, the Product Integration Scenario and related methodology have been defined to handle digital integration chains and to provide a test case scenario for testing DASIF concepts. These latter have been used to specify and develop a prototype of an “Integrator Dedicated Environment” implemented in commercial PLM/SLM applications. Finally the DASIF conceptual data model has also served as input for contributing to the definition of the Behavioural Digital Aircraft Business Object Model: the standardized data model of the BDA platform enabling interoperability between heterogeneous PLM/SLM applications and to which existing local design environments and new services to be developed could plug.
机译:本博士论文的目的是促进航空业的设计,集成和仿真活动的开展,但更广泛地是在协作复杂产品开发的背景下。预期将通过使用和改进数字工程功能来实现此目标。在过去的十年中,由产品数据管理(PDM)系统支持的数字模型(DMU)成为在联合设计师之间交换/共享基于3D CAD模型的通用产品定义的关键联合环境。它使设计人员和下游用户(分析师)可以访问产品装配的几何形状。 DMU在协作和分布式设计过程中增强3D和2D仿真的同时,为分析人员提供了新的视角,以检索用于有限元分析(FEA)的适当CAD数据输入,从而加快了仿真准备过程。但是,当前的工业DMU受到一些限制,例如在内容和结构方面缺乏灵活性,缺少描述其组件之间关系的数字接口对象以及与仿真活动和数据的集成不足。 DMU转换需要提供适合的DMU,这些DMU可用作大型装配体FEA的直接输入。这些转换必须与仿真环境和目标保持一致,并导致将“产品视图”的概念应用于DMU,并导致“行为模型”(BMU)。产品视图定义了产品表示与分别使用或生成此表示作为输入或输出的活动或过程(至少由一个利益相关者执行)之间的链接。 BMU与DMU等效,用于模拟数据和过程。除了DMU中表示的几何形状之外,所谓的BMU应该在逻辑上链接所有模拟单个组件或组件的物理行为和特性所需的数据和模型。实现将已建立的基于CAD的DMU概念扩展到基于行为CAE的BMU的目标的关键推动因素是在BMU及其关联的DMU之间找到双向接口概念。这是本博士提出的设计分析系统集成框架(DASIF)的目标。该框架可以在PLM / SLM环境中实现,并且可以与CAD-DMU和CAE-BMU环境互操作。 DASIF将PDM系统的配置数据管理功能与MBSE系统建模概念和仿真数据管理功能相结合。该博士学位是在欧洲研究项目CRESCENDO项目中完成的,该项目旨在交付行为数字飞机(BDA)。 BDA的概念可能包含在航空产品整个开发生命周期中用于设计仿真过程和模型的协作数据交换/共享平台。在该项目中,已经定义了产品集成方案和相关方法,以处理数字集成链并提供用于测试DASIF概念的测试用例方案。后者已用于指定和开发在商业PLM / SLM应用程序中实现的“集成商专用环境”的原型。最后,DASIF概念数据模型还为行为数字飞机业务对象模型的定义做出了贡献:BDA平台的标准化数据模型可实现异构PLM / SLM应用程序之间的互操作性以及现有的本地设计环境和新的要开发的服务可能会堵塞。

著录项

  • 作者

    Vosgien Thomas;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:24:43

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