首页> 外文期刊>Procedia CIRP >Synchronizing Digital Process Twins between virtual products and resources – A virtual design method
【24h】

Synchronizing Digital Process Twins between virtual products and resources – A virtual design method

机译:在虚拟产品和资源之间同步数字过程孪生兄弟–一种虚拟设计方法

获取原文
       

摘要

Modern technologies, such as cyber-physical systems and the digital twin, are driving current developments in digital production and its virtual planning tools. Thus leads to specific need for consistent methods that can be used across projects, especially on the future production planning’s long term view. Existing approaches deal with the cross-sectoral, virtually supported integration of cyber-physical properties in production structures by using multiple software structures. However, the potential of current production-related simulation tools in the field of systems virtual validation in the planning phase has not yet been exhausted. Based on this, the present work deals with a method for model data enrichment within virtual model-based systems development process that is executed in front of systems’ virtual commissioning. The elaborated method presupposes the successful procurement of the necessary CAD data as geometrical information and is divided into four steps, starting from the analysis of the process parameters on the basis of the product to be produced. In the second step, a property determination of the existing and planned production structure is carried out. In order to transfer the findings to the virtual modeling process, the third step is to determine the modeling needs between the current state of production and the planned cyber-physical production. Finally, a data enrichment of the products and resources behavioral models takes place that causes possibility of the mutual production-technical influence for example, by synchronizing the process structure that is stored in virtual products and resources. The method is to be classified as a total consideration of products, processes and resources in simulation-based functional verification and physical property validation. In addition, the four steps will be verified, by using the automated car-underbody assembly demonstrator for the physical relief of workers in the final assembly area of ??automobile production, including many variants.
机译:网络物理系统和数字孪生等现代技术正在推动数字生产及其虚拟规划工具的最新发展。因此,特别需要对可在整个项目中使用的一致方法的需求,尤其是在未来生产计划的长期视图中。现有方法通过使用多个软件结构来处理跨部门,虚拟支持的生产结构中网络物理属性的集成。但是,在计划阶段的系统虚拟验证领域中,当前与生产相关的仿真工具的潜力尚未耗尽。基于此,本工作涉及一种在基于虚拟模型的系统开发过程中用于模型数据丰富的方法,该方法在系统的虚拟调试之前执行。精心设计的方法以成功采购必要的CAD数据作为几何信息为前提,并从基于要生产的产品的过程参数分析开始,分为四个步骤。在第二步中,对现有和计划中的生产结构进行属性确定。为了将调查结果转移到虚拟建模过程中,第三步是确定当前生产状态和计划的网络物理生产之间的建模需求。最后,对产品和资源行为模型的数据进行了充实,例如通过同步存储在虚拟产品和资源中的过程结构,引起了生产技术相互影响的可能性。该方法应归类为基于仿真的功能验证和物理属性验证中产品,过程和资源的总考虑。此外,将通过使用自动车底组装演示器来验证这四个步骤,以使汽车生产的最终组装区域中的工人得到实际的救济,包括许多变体。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号