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Detection of Eccentricity Faults in Three-Phase Reluctance Synchronous Motor

机译:三相磁阻同步电动机的偏心故障检测

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摘要

Reluctance synchronous machines, particularly the newer ones with axially laminated anisotropic rotor, are being employed increasingly in many industrial applications as they offer energy efficient solutions along with low-cost rugged construction and zero speed regulation. High-performance requirements of the machine demand a high saliency ratio resulting in low air-gap length along the direct axis. Air-gap eccentricity diagnosis therefore becomes very significant. In this paper, the effects of different types of eccentricity faults in a commercially available reluctance synchronous motor (RSM) are first analyzed to identify the fault-specific frequency components in the line current spectrum. For validating the analyses, a modified-winding-function-based model and a finite-element-based model are built to simulate the motor under different eccentricity conditions. Experiments are then carried out on a three-phase RSM with a moderate to high level of eccentricity to confirm the theoretical prediction and simulation results. Finally, by applying residue-elimination technique, the effects of supply unbalance and internal asymmetry are minimized, and eccentricity is detected very reliably. These results will help noninvasive eccentricity fault detection in larger power salient-pole synchronous machines in the long run.
机译:磁阻同步电机,尤其是带有轴向叠片各向异性转子的新型磁阻同步电机,由于其提供了节能解决方案以及低成本的坚固结构和零速调节,因此越来越多地应用于许多工业应用中。机器的高性能要求需要很高的凸度比,导致沿直轴的气隙长度很短。因此,气隙偏心率诊断变得非常重要。在本文中,首先分析了市售磁阻同步电动机(RSM)中不同类型的偏心故障的影响,以识别线路电流频谱中故障特定的频率分量。为了验证分析结果,建立了基于改进的绕线函数模型和基于有限元模型,以模拟不同偏心条件下的电动机。然后在具有中等偏高偏心率的三相RSM上进行实验,以确认理论预测和仿真结果。最后,通过应用残渣消除技术,可以最大程度地减少供应不平衡和内部不对称的影响,并且可以非常可靠地检测到偏心率。从长远来看,这些结果将有助于大型功率凸极同步电机的无创偏心故障检测。

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