State-model based time-domain diagnosis of internal faults for permanent magnet synchronous machine -wind application

A. Lalami, A. El-Ouafi, R. Wamkeue
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引用次数: 1

Abstract

Upon occurrence of an internal fault on the permanent magnet synchronous machine (PMSM), the topology of the stator is amended causing structural imbalances due to the change of the connection within the windings. In this work, a state model of internal faults of the PMSM is developed. This model is in the (abc) reference frame. The modeling approach is based on the assumption that each stator phase is replaced by two major and minor sub-windings. This model is used subsequently in the residual generation for diagnosis. The fault indicators are obtained by the projection in parity space and estimated using the Luenberger observer. A scenario of fault inter-turn by the short-circuit occurring between phase (a and b) is validated by simulation.
基于状态模型的永磁同步电机内部故障时域诊断——风力应用
当永磁同步电机(PMSM)发生内部故障时,由于绕组内部连接的改变,定子的拓扑结构被修正,导致结构不平衡。本文建立了永磁同步电机内部故障的状态模型。这个模型在(abc)参考系中。建模方法是基于假设每个定子相位被两个主要和次要的子绕组取代。该模型随后用于残差生成进行诊断。通过宇称空间的投影得到故障指标,并利用Luenberger观测器进行估计。通过仿真验证了A、b两相短路引起的故障匝间故障的情形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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