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An Interface-Oriented Resource Capability Model to Support Reconfiguration of Manufacturing Systems

机译:面向接口的资源能力模型以支持制造系统的重新配置

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Global trends in manufacturing force companies to deal with a production environment with increasing dynamics. In such an environment, companies have to cope with frequent changes of production requirements and conditions. In order to cope with these frequent changes, manufacturing machines have been designed to be reconfigurable. Although machines of this type have the potential to deal with a dynamic production environment, their full potential cannot be exploited, yet. One crucial reason for this is the long reaction time for the identification and design of a required system configuration. A first step towards problem solving is to have a capability model of manufacturing resources. Based on such a capability model, the manufacturability of production requests could be quickly analyzed. In addition, these models can be utilized to generate new configurations, which match changed requirements. However, state of the art approaches have several drawbacks regarding the efficient analysis of manufacturability and feasible resource reconfigurations. Accordingly, this contribution presents an interface-oriented approach for the modeling of manufacturing resource capabilities. The approach aims at the facilitation of the manufacturability check and reconfiguration analysis. Furthermore, the implementation of the modeling concept in AutomationML is presented, which allows a machine-interpretable representation of the model in a neutral data format. The applicability of the approach is illustrated by an example of an automated riveting system at Airbus and a discussion regarding the advantages and drawbacks of the developed approach is given.
机译:制造业的全球趋势迫使公司应对不断变化的生产环境。在这种环境下,公司必须应对生产要求和条件的频繁变化。为了应对这些频繁的变化,制造机器已被设计为可重新配置的。尽管这种类型的机器具有应对动态生产环境的潜力,但它们的全部潜能仍无法得到利用。一个重要的原因是识别和设计所需的系统配置需要较长的反应时间。解决问题的第一步是建立制造资源的能力模型。基于这种能力模型,可以快速分析生产请求的可制造性。此外,这些模型可用于生成新的配置,以匹配更改后的需求。然而,关于可制造性的有效分析和可行的资源重新配置,现有技术的方法具有若干缺点。因此,该贡献提出了一种用于制造资源能力建模的面向接口的方法。该方法旨在促进可制造性检查和重新配置分析。此外,还介绍了AutomationML中建模概念的实现,该实现允许以中性数据格式对模型进行机器可解释的表示。该方法的适用性以空中客车公司的自动铆接系统为例进行了说明,并讨论了所开发方法的优缺点。

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