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DIGITAL FACTORY, METHODS AND APPLICATIONS IN AUDI HUNGARIA MOTOR LTD.

机译:数字工厂,奥迪匈牙利汽车有限公司的方法和应用。

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In today's economy the product life cycle has been shortened. There is a new challenge for manufacturers: high quality products are to be produced, the introduction time is very short and the costs must be as low as possible. PLM is an engineering solution to address this challenge. It allows for users to analyse and manage products through the whole product lifecycle. A manufacturing system is usually a large investment, it consists mostly of equipment and software to operate them. The integration of these part systems is time-consuming, and means high costs. To establish an efficient manufacturing system design the dynamic model of the organizations is useful. It makes possible to perform "what-if" analysis, but it needs experts in construction and in result analysis. Nowadays production tasks need a very complex planning process beforehand. This is caused by the high amount of variants of one product. We can speak here about vehicle or engine production. This often is a very challenging planning and production process. The tools and methods of the digital factory can be helpful in order to solve these challenges. Product and production planning not only have a large number of influencing parameters, but the combination of these parameters causes a lot of options and problems to solve. In practice there is not enough time to fulfil the mathematical analysis manually, even if the right behaviour functions are ready to use. The digital factory is the generic term for an extensive network of digital models and methods, including simulation and 3D visualization. Its purpose is the integrated planning, implementation and continuous improvement in all factory processes and resources associated with the product. This paper describes the steps of introduction of digital factory at Audi Hungaria Motor Ltd., showing examples from different fields of applications.
机译:在今天的经济中,产品生命周期已缩短。制造商举行了新的挑战:要生产高质量的产品,引进时间非常短,成本尽可能低。 PLM是一个解决这一挑战的工程解决方案。它允许用户通过整个产品生命周期分析和管理产品。制造系统通常是庞大的投资,它主要由操作和软件组成。这些部件系统的集成是耗时的,并且意味着高成本。要建立高效的制造系统设计,组织的动态模型很有用。可以执行“什么”分析,但它需要建设的专家和结果分析。如今,生产任务事先需要一个非常复杂的规划过程。这是由一种产品的大量变体引起的。我们可以在这里发言关于车辆或发动机生产。这通常是一个非常具有挑战性的规划和生产过程。数字工厂的工具和方法可以有所帮助,以解决这些挑战。产品和生产规划不仅具有大量影响的参数,而且这些参数的组合导致大量的选择和问题来解决。在实践中,即使正确的行为函数已准备好使用,也没有足够的时间来满足数学分析。数字工厂是广泛的数字模型和方法网络的通用术语,包括模拟和3D可视化。其目的是所有工厂流程和与产品相关的资源的综合规划,实施和持续改进。本文介绍了奥迪匈牙利汽车有限公司在数字工厂引进数字工厂的步骤,显示了不同应用领域的示例。

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