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Time-Frequency Tracking of Spectral Structures Estimated by a Data-Driven Method

机译:数据驱动方法估算的光谱结构的时频跟踪

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The installation of a condition monitoring system (CMS) aims to reduce the operating costs of the monitored system by applying a predictive maintenance strategy. However, a system-driven configuration of the CMS requires the knowledge of the system kinematics and could induce a lot of false alarms because of predefined thresholds. The purpose of this paper is to propose a complete data-driven method to automatically generate system health indicators without any on the monitored system or the acquired signals. This method is composed of two steps. First, every acquired signal is analyzed: the spectral peaks are detected and then grouped in a more complex structure as harmonic series or modulation sidebands. Then, a time-frequency tracking operation is applied on all available signals: the spectral peaks and the spectral structures are tracked over time and grouped in trajectories, which will be used to generate the system health indicators. The proposed method is tested on real-world signals coming from a wind turbine test rig. The detection of a harmonic series and a modulation sideband reports the birth of a fault on the main bearing inner ring. The evolution of the fault severity is characterized by three automatically generated health indicators and is confirmed by experts.
机译:状态监视系统(CMS)的安装旨在通过应用预测性维护策略来降低被监视系统的运营成本。但是,CMS的系统驱动配置需要了解系统运动学知识,并且由于预定义的阈值而可能引起许多错误警报。本文的目的是提出一种完整的数据驱动方法,以自动生成系统运行状况指示器,而无需监视系统或获取的信号。此方法包括两个步骤。首先,分析每个采集的信号:检测频谱峰值,然后以更复杂的结构分组为谐波序列或调制边带。然后,对所有可用信号进行时频跟踪操作:随时间跟踪频谱峰值和频谱结构,并按轨迹分组,这将用于生成系统运行状况指示器。在来自风力涡轮机测试台的真实信号上对提出的方法进行了测试。谐波序列和调制边带的检测报告了主轴承内圈故障的产生。故障严重性的演变以三个自动生成的健康指标为特征,并由专家确认。

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