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Non-Invasive Detection of Rotor Short-Circuit Fault in Synchronous Machines by Analysis of Stray Magnetic Field and Frame Vibrations

机译:杂散磁场和框架振动分析的同步电机转子短路故障无损检测

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摘要

This paper concerns a coupled analysis of the stray magnetic field and the external housing vibration of a synchronous machine to detect rotor short-circuit faults. Indeed, in addition to the possibility to measure these parameters with non-invasive equipment, these two measures depend on the air-gap flux density that is directly impacted by the short circuits of any nature. Hence, correlating these two quantities, it is achievable to confirm or discard an eventual motor fault. This method allows both to develop an analysis of non-invasive manner and to establish the magnetic state of a synchronous generator in normal operation. The experimental survey of stray magnetic field and housing vibration spectrum is shown as a promising alternative at low cost and easy to implement and to determine, for instance, rotor turn-to-turn winding faults. Faulty and healthy signatures are drawn from the measured spectra to determine a degree of healthy state of the synchronous machine.
机译:本文涉及对同步电机的杂散磁场和外壳振动进行耦合分析,以检测转子短路故障。实际上,除了可以用非侵入式设备测量这些参数之外,这两种方法还取决于气隙通量密度,该气隙通量密度直接受到任何性质的短路的影响。因此,将这两个量相关联,可以确认或丢弃最终的电动机故障。这种方法既可以进行非侵入式分析,也可以在正常运行中建立同步发电机的磁状态。杂散磁场和外壳振动频谱的实验调查显示,它是一种有前途的替代方法,价格低廉,易于实施和确定,例如转子匝间绕组故障。从测得的光谱中得出故障和健康的信号,以确定同步电机的健康状态的程度。

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