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Detection of rotor faults under transient operating conditions by means of the Vienna Monitoring Method

机译:通过维也纳监测方法检测瞬态操作条件下的转子故障

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This contribution investigates the Vienna Monitoring Method during transient operation. The Vienna Monitoring Method is a rotor fault detection technique based on two space phasor machine models. These models derive quantities such as flux and torque. An induction machine with rotor asymmetries gives rise to double slip frequency oscillations of shaft torque. These oscillations are also reflected in the modelled torques. Accordingly, the fault indicator of the Vienna Monitoring Method is derived from the difference of the computed torques to compensate load effects. This paper presents measurement results regarding the Vienna Monitoring Method during stationary and transient operating conditions. The transient conditions include varying voltage and frequency as well as varying torque. The two transient cases are a challenge for any rotor fault detection technique, since the magnitudes and frequencies of fault-specific signatures are highly load and speed dependent.
机译:此贡献在瞬态操作期间调查了维也纳监测方法。 维也纳监测方法是基于两个空间量相机模型的转子故障检测技术。 这些模型导出诸如焊剂和扭矩等数量。 具有转子不对称的感应机器产生了轴扭矩的双滑移频率振荡。 这些振荡也反映在模拟的扭矩中。 因此,维也纳监测方法的故障指示器来自计算的扭矩的差异来补偿负载效应。 本文介绍了在静止和瞬态操作条件下的维也纳监测方法的测量结果。 瞬态条件包括变化的电压和频率以及不同的扭矩。 两个瞬态案例是任何转子故障检测技术的挑战,因为特定故障特定签名的大小和频率是高负载和速度的依赖性。

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