Methodology for Selection of Condition Monitoring Techniques for Rotating Machinery

IF 1.4 Q2 ENGINEERING, MULTIDISCIPLINARY
A. Anuj, Gurmeet Singh, Vallayil Narayana Achutha Naikan
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引用次数: 2

Abstract

Rotating machinery generally consist of a driver machine such as a motor and a driven machine or load such as a compressor or pump. Several condition monitoring (CM) techniques have been developed over the years for the predictive maintenance of rotating machinery. An appropriate selection of these techniques needs to be established for maximizing the ROI (Return on investment) of such systems. This paper proposes a methodology for the proper selection of CM techniques based on factors such as fault detectability, fault severity, cost, ease of data collection, noise, and system criticality. Effective techniques are recommended based on applicability in the industrial scenario and research done till now. A careful scoring system was adopted and weightage was given to each factor by expert opinion depending on its importance in the industrial environment. Multi-criteria decision-making (MCDM) was used to obtain comparable technique combination scores. The effectiveness of a single technique was found limited in rotating machinery, effective combinations were made and scored according to important factors. Final scores were obtained and top combinations were chosen for non-critical, sub-critical, and critical systems. A possible way of implementation is also shown for remote monitoring through literature.
旋转机械状态监测技术选择方法
旋转机械通常由驱动机器(如电动机)和被驱动机器或负载(如压缩机或泵)组成。多年来,一些状态监测(CM)技术已被开发用于旋转机械的预测性维护。需要对这些技术进行适当的选择,以使这些系统的ROI(投资回报)最大化。本文提出了一种基于故障可检测性、故障严重程度、成本、数据收集难易程度、噪声和系统临界性等因素正确选择CM技术的方法。根据工业场景的适用性和目前所做的研究,推荐了有效的技术。采用了仔细的评分系统,并根据其在工业环境中的重要性,由专家意见给予每个因素的权重。采用多准则决策(MCDM)获得可比较的技术组合得分。在旋转机械中,发现单一技术的有效性有限,根据重要因素进行有效组合并评分。获得最终得分,并为非关键、次关键和关键系统选择最佳组合。通过文献分析,给出了远程监控的一种可能实现方式。
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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来源期刊
CiteScore
2.90
自引率
9.50%
发文量
18
审稿时长
9 weeks
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