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A model-driven approach to multidisciplinary collaborative simulation for virtual product development

机译:基于模型的虚拟产品开发多学科协作仿真方法

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摘要

The design and development of complex artifacts and systems is shifting towards a distributed and collaborative paradigm. The simulation environments for such a paradigm, therefore, need to take into account the cooperation between design teams, i.e. supporting multidisciplinary simulation in a distributed environment. However, current simulation tools can not fulfil this requirement as they have been developed to solve the specific problems from different disciplines. Although it's already possible to perform multidisciplinary simulations by using several tools together, it is very difficult to implement it when these tools are distributed on the Internet. A solution which can support the integration of distributed simulation models at run-time is presented, involving a computational infrastructure and a high-level modelling approach. Specifically, the infrastructure is constructed by a novel combination of two distributed computing techniques to implement the synchronization of distributed models, as well as to ensure the interoperability at run-time. In addition, a model-driven approach is developed to bridge the high-level model of a simulation system and the infrastructure which implements this model. The solution is evaluated by making a comparison with other approaches, as well as by developing a prototype tool. It's shown in the evaluation that (1) it is viable to develop multidisciplinary simulations in a distributed environment using this solution; (2) the model-driven approach allows designers to focus only on the high-level structure of a design without getting concerned with the details of the infrastructure.
机译:复杂工件和系统的设计和开发正朝着分布式和协作的范式转变。因此,用于这种范例的仿真环境需要考虑设计团队之间的合作,即在分布式环境中支持多学科仿真。但是,当前的仿真工具不能满足此要求,因为它们已经被开发用于解决不同学科的特定问题。尽管已经可以通过同时使用多种工具来进行多学科仿真,但是当这些工具分布在Internet上时,实现起来非常困难。提出了一种可以在运行时支持分布式仿真模型集成的解决方案,其中涉及计算基础架构和高级建模方法。具体来说,基础架构是通过两种分布式计算技术的新颖组合来构建的,以实现分布式模型的同步,并确保运行时的互操作性。此外,还开发了一种模型驱动的方法来桥接仿真系统的高级模型和实现该模型的基础结构。通过与其他方法进行比较以及开发原型工具来评估解决方案。评估显示:(1)使用此解决方案在分布式环境中开发多学科模拟是可行的; (2)模型驱动的方法允许设计人员仅关注设计的高层结构,而不必关心基础结构的细节。

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  • 来源
    《Advanced engineering informatics》 |2010年第2期|P.167-179|共13页
  • 作者单位

    State CIMS Engineering Research Centre, Tsinghua University, Beijing 100084, PR China;

    Engineering Design Centre, Cambridge University Engineering Department, Cambridge CB2 1PZ, UK;

    LAPS-IMS, University Bordeaux 1, 351 Cours de la liberation, 33405 Talence cedex, France;

    rnLAPS-IMS, University Bordeaux 1, 351 Cours de la liberation, 33405 Talence cedex, France;

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