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Virtual Prototyping and Validation of Cpps within a New Software Framework ?

机译:在新软件框架内对Cpps进行虚拟原型设计和验证?

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As a result of the growing demand for highly customized and individual products, companies need to enable flexible and intelligent manufacturing. Cyber-physical production systems (CPPS) will act autonomously in the future in an interlinked production and enable such flexibility. However, German mid-sized plant manufacturers rarely use virtual technologies for design and validation in order to design CPPS. The research project Virtual Commissioning with Smart Hybrid Prototyping (VIB-SHP) investigated the usage of virtual technologies for manufacturing systems and CPPS design. Aspects of asynchronous communicating, intelligent- and autonomous-acting production equipment in an immersive validation environment, have been investigated. To enable manufacturing system designers to validate CPPS, a software framework for virtual prototyping has been developed. A mechatronic construction kit for production system design integrates discipline-specific models and manages them in a product lifecycle management (PLM) solution. With this construction kit manufacturing designers are able to apply virtual technologies and the validation of communication processes with the help of behavior models. The presented approach resolves the sequential design process for the development of mechanical, electrical, and software elements and ensures the consistency of these models. With the help of a bill of material (BOM)- and signal-based alignment of the discipline-specific models in an integrated mechatronic product model, the communication of the design status and changes are improved. The re-use of already-specified and -designed modules enable quick behavior modeling, code evaluation, as well as interaction with the virtualized assembly system in an immersive environment.
机译:由于对高度定制和个性化产品的需求不断增长,因此公司需要实现灵活和智能的制造。网络物理生产系统(CPPS)将来将在相互关联的生产中自主发挥作用,并实现这种灵活性。但是,德国中型工厂制造商很少使用虚拟技术进行设计和验证,以设计CPPS。研究项目智能混合原型虚拟调试(VIB-SHP)研究了虚拟技术在制造系统和CPPS设计中的使用。在沉浸式验证环境中,已经研究了异步通信,智能和自主生产设备的各个方面。为了使制造系统设计人员能够验证CPPS,已经开发了用于虚拟样机的软件框架。用于生产系统设计的机电一体化构造套件集成了特定学科的模型,并在产品生命周期管理(PLM)解决方案中对其进行管理。借助该构造套件,制造商设计人员能够借助行为模型来应用虚拟技术并验证通信流程。提出的方法解决了机械,电气和软件元素开发的顺序设计过程,并确保了这些模型的一致性。借助集成机电产品模型中特定学科模型的物料清单(BOM)和基于信号的对齐,可以改善设计状态和变更的通信。重复使用已指定和设计的模块,可以在沉浸式环境中进行快速的行为建模,代码评估以及与虚拟化装配系统的交互。

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