Predictive maintenance – a major field for the application of computer aided systems

A. Andrushko, M. Lobur, M. Iwaniec
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Abstract

Predictive maintenance is a widely applied maintenance program that requires extensive support of computer aided systems. The program uses specific procedures that are to be addressed when developing predictive maintenance software solutions. Despite the fact that software solutions for predictive maintenance were introduced almost at the same time as the program emerged, it still remains a very actual field for the application of computer aided systems. The practice also shows that developers of computer aided systems for predictive maintenance constantly encounter problems, trying to translate predictive maintenance procedures into the computer language. These procedures are very specific and require microprocessor-based equipment and development of sophisticated algorithms. Therefore, there is a distinct need for better awareness about the predictive maintenance concept among software developers. The article aims to describe the essence of the predictive maintenance concept, its fundamental approaches and the main physical processes upon which the predictive maintenance procedures are based: (1) distinct vibration frequency components which are inherent in all common failure modes; and (2) constant amplitude of each distinct vibration component. The importance of the awareness with the concept for computer aided systems developers is emphasized. And the most problematic areas of software application in predictive maintenance programs are outlined, namely the development of effective computerized systems to capture and analyze an immense quantity of data (big data processing), and the development of systems, supporting an intelligent connection of smart devices with the means of internet protocols (Internet of Things).
预测性维护——计算机辅助系统应用的一个主要领域
预测性维修是一种广泛应用的维修计划,需要计算机辅助系统的广泛支持。该计划使用在开发预测性维护软件解决方案时要解决的特定程序。尽管预测性维护的软件解决方案几乎在程序出现的同时被引入,但它仍然是计算机辅助系统应用的一个非常实际的领域。实践还表明,用于预测性维护的计算机辅助系统的开发人员不断遇到问题,试图将预测性维护程序翻译成计算机语言。这些程序非常具体,需要基于微处理器的设备和复杂算法的开发。因此,软件开发人员明显需要更好地了解预测性维护概念。本文旨在描述预测性维修概念的本质、基本方法和预测性维修程序所依据的主要物理过程:(1)在所有常见故障模式中固有的不同振动频率成分;(2)各不同振动分量的恒定振幅。强调了计算机辅助系统开发人员对这一概念的认识的重要性。并概述了预测性维护计划中软件应用中最具问题的领域,即开发有效的计算机化系统来捕获和分析大量数据(大数据处理),以及开发系统,支持智能设备与互联网协议(物联网)的智能连接。
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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