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Mounting system with virtual representation

Mounting system with virtual representation
具有虚拟表示的安装系统
批准号:
420692727
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Major Research Instrumentation
财政年份:
2019
资助国家:
德国
项目状态:
未结题
起止时间:
2018-12-31 至 --

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中文摘要
翻译
安装系统及其虚拟表示将整合鲁尔大学波鸿生产系统主席(LPS)四个研究小组的研究课题。跨组的研究主题包括:带有人机协作工作站的混合装配系统的规划工具,在一个过程中处理不同和不断变化的组件变体,生产线平衡,用于变体控制的数字工人辅助和指导系统,以及链接装配站和流程的集成网络。这些主题只能在一个真实的和完整的装配过程中进一步开发和验证。安装系统的虚拟表示做出了越来越重要的贡献。它们构成了模拟装配过程、进行虚拟调试、离线编程、为数字工人辅助和指导系统提供信息和数据以及真实的实时监控数字孪生模型上的过程行为的基础。因此,这总体上将有助于优化真实的组装过程。一个特殊的挑战是集成的异构组件结构,如混合装配系统中发现的,到一个功能的虚拟表示。此外,应强调人体模拟。由于机器人单元或纯手动装配工作的模拟已经代表了现有技术的状态,因此在一个生产过程中人与机器之间的影响的情况下,模拟系统仍然显示出相当大的缺陷。这也适用于人类工作的实时数据采集,以通过数字孪生来监控系统行为。在这方面,必须找到技术解决方案,以便记录相关数据,并在正在进行的过程中将其提供给数字孪生模型。此外,装配过程模拟需要扩展到包括处理和进料系统。模拟物理成分的行为与混乱的组成部分规定,因为他们可以发现与振动喂料机,很少使用的进料系统和分离技术的规划日期。随着LPS在动态和变化过程条件领域的相关基础研究,基于所需装配系统的生产系统仿真应该达到比今天的仿真模型更真实和复杂的水平。LPS已经在生产工程和管理,生产数字化,自动化技术以及工业机器人。应用的悬置系统及其虚拟表示应加强,完善和扩大在LPS作为一个重要的技术设备模块的工业生产装配领域。
英文摘要
The mounting system with its virtual representation shall integrate the research topics of the four research groups of the Chair of Production Systems (LPS) at Ruhr University Bochum. The cross-group research topics are among other things: planning tools for hybrid assembly systems with Human-Robot-Collaboration workstations, handling of different and changing component variants in one process, line balancing, digital worker assisting and guiding systems for variant control as well as with the integrated networking of linked assembly stations and processes. These topics can only be further developed and validated within a realistic and complete assembly process in a mounting system.An increasingly important contribution is made by virtual representations of mounting systems. They form the basis for simulating assembly processes, conducting virtual commissioning, offline programming, providing information and data for digital worker assisting and guiding systems as well as monitoring process behaviour on the digital twin in real time. Hence, this in total shall contribute to optimize the real assembly process. One particular challenge is the integration of a heterogeneous component structure, as found in hybrid assembly systems, into a functional virtual representation. In addition, the human simulation should be emphasized. As simulations of robot cells or purely manual assembly work already represent the state of the art, simulation systems still show considerable deficits in the case of influences between man and machine within one production process. This also applies to the real-time data acquisition of human work to monitor the system behaviour by the digital twin. Here, technical solutions have to be found in order to record relevant data and make it available to the digital twin in the ongoing process. In addition, process simulations in assembly need to be extended to include handling and feeding systems. Simulation of physical component behaviour with chaotic component provision, as they can be found with vibratory feeders, has little use in the planning of feeding systems and separating technology to date. With the associated fundamental research at the LPS in the field of dynamic and changing process conditions, the simulation of production systems on the basis of the requested assembly system should reach a much more realistic and complex level than it is the case in today's simulation models.The LPS already has excellent competences from various fields and projects concerning production engineering and management, digitalisation in production, automation technology as well as industrial robotics. The applied mounting system with its virtual representation should strengthen, complete and expand the field of assembly in industrial production at the LPS as an essential technical equipment module.
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