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Analyzing the engineering effort for the commissioning of industrial automation systems

机译:分析工业自动化系统调试的工程工作量

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In the industrial automation a paradigm shift from centralized, static automation structures to reconfigurable manufacturing systems (RMS) might be lie ahead. RMS are seen as a key enabler for the required changeability of future production companies since they can reduce the engineering effort needed for the reconfiguration of existing or the construction of new production systems. However, it is not clear how the companies can benefit from RMS in detail. For example, the reduction of engineering effort cannot be expressed in figures by today. But such information is necessary to convince the industry of the advantages of the new production principle. Indeed, existing RMS paradigms like Service-Oriented Architectures are rarely used in the practice of automation. The basis for analyzing the advantages of RMS is an analysis of the status quo in the industrial automation. Regarding the engineering effort of current automation systems, this paper will present a case study considering the effort occurring during the commissioning process of a production system constructed by state-of-the-art components. The evaluation of the study can serve as a reference when comparing the engineering effort of RMS with today's systems.
机译:在工业自动化中,可能会出现从集中的静态自动化结构到可重配置制造系统(RMS)的范式转变。 RMS被认为是未来生产公司所需的可更改性的关键推动力,因为它们可以减少重新配置现有产品或构建新生产系统所需的工程设计工作。但是,尚不清楚公司如何从RMS中详细受益。例如,到今天为止,尚无法用数字来表示工程量的减少。但是,此类信息对于使行业相信新生产原理的优势是必要的。确实,诸如面向服务的体系结构之类的现有RMS范例很少在自动化实践中使用。 RMS优势分析的基础是对工业自动化现状的分析。关于当前自动化系统的工程设计,本文将提供一个案例研究,其中考虑了由最先进的组件构成的生产系统的调试过程中发生的工作。在将RMS与当今系统的工程成果进行比较时,研究的评估可以作为参考。

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