首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >APPLICATION OF CYCLO-NON-STATIONARY INDICATORS FOR BEARING MONITORING UNDER VARYING OPERATING CONDITIONS
【24h】

APPLICATION OF CYCLO-NON-STATIONARY INDICATORS FOR BEARING MONITORING UNDER VARYING OPERATING CONDITIONS

机译:非循环状态指示器在变化工作条件下的轴承监测中的应用

获取原文

摘要

Condition monitoring assesses the operational health of rotating machinery, in order to provide early and accurate warning of potential failures such that preventative maintenance actions may be taken. To achieve this target, manufacturers start taking on the responsibilities of engine condition monitoring, by embedding health monitoring systems within each engine unit and prompting maintenance actions when necessary. Several types of condition monitoring are used including oil debris monitoring, temperature monitoring and vibration monitoring. Among them, vibration monitoring is the most widely used technique. Machine vibro-acoustic signatures contain pivotal information about its state of health. The current work focuses on one part of the diagnosis stage of condition monitoring for engine bearing health monitoring as bearings are critical components in rotating machinery. A plethora of signal processing tools and methods applied at the time domain, the frequency domain, the time-frequency domain and the time-scale domain have been presented in order to extract valuable information by proposing different diagnostic features. Among others, an emerging interest has been reported on modeling rotating machinery signals as cyclostationary, which is a particular class of non-stationary stochastic processes. A process x(t) is said to be nth-order cyclostationary with period T if its nth-order moments exist and are periodic with period T. Several tools, such as the Spectral Correlation Density (SCD) and the Cyclic Modulation Spectrum (CMS) can be used in order to extract interesting information concerning the cyclic behavior of cyclostationary signals. In order to measure the cyclostationarity from order 1 to 4, concise and global indicators have been proposed. However, in a number of applications such as aircraft engines and wind turbines the characteristic vibroacoustic signatures of rotating machinery depend on the operating conditions of the rotational speed and/or the load. During the last decades fault diagnostics of rotating machinery under variable speed/load has attracted a lot of interest. The classical cyclostationary tools can be used under the assumption that the speed of machinery is constant or nearly constant, otherwise the vibroacoustic signal becomes cyclo-non-stationary. In order to overcome this limitation a generalization of both SCD and CMS functions have been proposed displaying cyclic Order versus Frequency. The goal of this paper is to propose a novel approach for the analysis of cyclo-nonstationary signals based on the generalization of indicators of cyclostationarity in order to cover the speed varying conditions. The proposed indicators of cyclo-non-stationarity (ICNS) are expected to summarize the information at various statistical orders and at lower computational cost compared to the Order-Frequency SCD or CMS. This generalization is realized by introducing a new speed-dependent angle averaging operator. The effectiveness of the approach is evaluated on an acceleration signal captured on the casing of an aircraft engine gearbox, provided by SAFRAN, in the frames of SAFRAN contest which took place at the Surveillance 8 International Conference.
机译:状态监视评估旋转机械的运行状况,以便对潜在故障提供早期和准确的警告,从而可以采取预防性维护措施。为了实现这一目标,制造商开始承担发动机状态监视的职责,方法是将健康监视系统嵌入每个发动机单元中,并在必要时提出维护措施。使用了几种类型的状态监视,包括油屑监视,温度监视和振动监视。其中,振动监测是使用最广泛的技术。机器振动声签名包含有关其健康状态的关键信息。由于轴承是旋转机械中的关键组件,当前的工作集中在状态监测的诊断阶段的一部分,以进行发动机轴承的健康状况监测。已经提出了在时域,频域,时频域和时标域上应用的大量信号处理工具和方法,以便通过提出不同的诊断特征来提取有价值的信息。除其他外,已经报道了将旋转机械信号建模为循环平稳的兴趣,这是一类非平稳随机过程。如果过程x(t)的n阶矩存在,则称其为周期T的n阶循环平稳,并且周期为T。可以用来提取关于循环平稳信号的循环行为的有趣信息。为了测量从1阶到4阶的循环平稳性,已经提出了简洁而全局的指标。然而,在诸如飞机发动机和风力涡轮机的许多应用中,旋转机械的特征性振动声特征取决于旋转速度和/或负载的操作条件。在过去的几十年中,旋转机械在变速/负载下的故障诊断引起了人们的极大兴趣。可以在机械速度恒定或接近恒定的假设下使用经典的循环平稳工具,否则振动声信号会变成非循环平稳的信号。为了克服该限制,已经提出了SCD和CMS功能的通用化,以显示循环阶数与频率。本文的目的是基于循环平稳性指标的概括,提出一种用于分析循环非平稳信号的新方法,以涵盖速度变化条件。与订单频率SCD或CMS相比,预期的拟议的非平稳性指标(ICNS)可以以各种统计顺序和较低的计算成本来汇总信息。通过引入新的速度相关的角度平均算子可以实现这种概括。该方法的有效性是根据在SAFRAN国际竞赛8场进行的SAFRAN竞赛的框架下,在SAFRAN提供的飞机发动机变速箱壳体上捕获的加速度信号上进行评估的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号