Optimising maintenance: What are the expectations for Cyber Physical Systems

E. Jantunen, Urko Zurutuza, L. Ferreira, P. Varga
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引用次数: 25

Abstract

The need for maintenance is based on the wear of components of machinery. If this need can be defined reliably beforehand so that no unpredicted failures take place then the maintenance actions can be carried out economically with minimum disturbance to production. There are two basic challenges in solving the above. First understanding the development of wear and failures, and second managing the measurement and diagnosis of such parameters that can reveal the development of wear. In principle the development of wear and failures can be predicted through monitoring time, load or wear as such. Monitoring time is not very efficient, as there are only limited numbers of components that suffer from aging which as such is result of chemical wear i.e. changes in the material. In most cases the loading of components influences their wear. In principle the loading can be stable or varying in nature. Of these two cases the varying load case is much more challenging than the stable one. The monitoring of wear can be done either directly e.g. optical methods or indirectly e.g. vibration. Monitoring actual wear is naturally the most reliable approach, but it often means that additional investments are needed. The paper discusses the above issues and what are the requirements that follow from these for optimising maintenance based of the use of Cyber Physical Systems.
优化维护:对网络物理系统的期望是什么
维修的需要是基于机械部件的磨损。如果这种需求可以事先可靠地定义,这样就不会发生不可预测的故障,那么维护行动就可以经济地进行,对生产的干扰最小。解决上述问题有两个基本挑战。首先了解磨损和故障的发展,其次管理这些参数的测量和诊断,这些参数可以揭示磨损的发展。原则上,磨损和故障的发展可以通过监测时间、载荷或磨损等来预测。监测时间不是很有效,因为只有有限数量的组件遭受老化,这是化学磨损的结果,即材料的变化。在大多数情况下,部件的载荷会影响它们的磨损。原则上,载荷可以是稳定的,也可以是变化的。在这两种情况下,变载荷情况比稳定载荷情况更具挑战性。磨损的监测可以直接进行,例如光学方法,也可以间接进行,例如振动。监测实际磨损自然是最可靠的方法,但这通常意味着需要额外的投资。本文讨论了上述问题,以及基于网络物理系统的使用优化维护的要求是什么。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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