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首页> 外文期刊>Applied Sciences >Detection of Eccentricity Faults in Five-Phase Ferrite-PM Assisted Synchronous Reluctance Machines
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Detection of Eccentricity Faults in Five-Phase Ferrite-PM Assisted Synchronous Reluctance Machines

机译:五相铁氧体-永磁辅助同步磁阻电机的偏心故障检测

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Air gap eccentricity faults in five-phase ferrite-assisted synchronous reluctance motors (fPMa-SynRMs) tend to distort the magnetic flux in the air gap, which in turn affects the spectral content of both the stator currents and the ZSVC (zero-sequence voltage component). However, there is a lack of research dealing with the topic of fault diagnosis in multi-phase PMa-SynRMs, and in particular, those focused on detecting eccentricity faults. An analysis of the spectral components of the line currents and the ZSVC allows the development of fault diagnosis algorithms to detect eccentricity faults. The effect of the operating conditions is also analyzed, since this paper shows that it has a non-negligible impact on the effectivity and sensitivity of the diagnosis based on an analysis of the stator currents and the ZSVC. To this end, different operating conditions are analyzed. The paper also evaluates the influence of the operating conditions on the harmonic content of the line currents and the ZSVC, and determines the most suitable operating conditions to enhance the sensitivity of the analyzed methods. Finally, fault indicators employed to detect eccentricity faults, which are based on the spectral content of the stator currents and the ZSVC, are derived and their performance is assessed. The approach presented in this work may be useful for developing fault diagnosis strategies based on the acquisition and subsequent analysis and interpretation of the spectral content of the line currents and the ZSVC.
机译:五相铁氧体同步磁阻电动机(fPMa-SynRMs)中的气隙偏心故障往往会扭曲气隙中的磁通量,进而影响定子电流和ZSVC(零序电压)的频谱含量零件)。但是,目前缺乏针对多相PMa-SynRM中故障诊断的研究,特别是那些专注于检测偏心故障的故障。对线路电流和ZSVC的频谱分量进行分析可以开发故障诊断算法以检测偏心故障。由于对定子电流和ZSVC的分析表明,运行条件​​对诊断的有效性和灵敏度的影响不可忽略,因此也对运行条件的影响进行了分析。为此,分析不同的操作条件。本文还评估了工作条件对线路电流和ZSVC谐波含量的影响,并确定了最合适的工作条件以增强分析方法的灵敏度。最后,基于定子电流和ZSVC的频谱含量,得出了用于检测偏心故障的故障指示器,并评估了它们的性能。这项工作中提出的方法可能对基于线路电流和ZSVC的频谱内容的采集以及后续分析和解释的故障诊断策略的开发很有用。

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