Hybrid data-based/model-based inter-turn fault detection methods for PM drives with manufacturing faults

N. Leboeuf, T. Boileau, B. Nahid-Mobarakeh, N. Takorabet, F. Meibody-Tabar, G. Clerc
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引用次数: 4

Abstract

In this paper, improved online inter-turn fault detection methods are proposed in order to take into account some design specifications related to recent Permanent Magnet Synchronous Machine (PMSM) topologies having modular stator combined with Fractionnal Slot Concentrated Winding (FSCW). This winding allows compact PM motor mainly by reducing end windings. It is often associated with segmented stator in order to simplify the construction of the motor as in the case of Electro-Mechanical Actuators (EMA). This technique may lead to the presence of manufacturing faults such as additional air gaps between the various parts of the modular stator. This urges users to consider complex models of PMSM far removed from classical dq models. Consequently, undesirable harmonics, torque ripples can interfere with fault detection such as inter-turn fault detection algorithms. This paper proposes invasive methods interacting with PMSM control using both model-based and data-based methods in order to take into account these aspects for control and online inter-turn fault detection. Various experimental tests on an industrial EMA prototype validate the effectiveness of the proposed solution.
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带有制造故障的永磁驱动转间故障混合检测方法
本文考虑到目前永磁同步电机(PMSM)的模块化定子与分数槽集中绕组(FSCW)相结合的拓扑结构的一些设计规范,提出了改进的在线匝间故障检测方法。这种绕组允许紧凑的永磁电机主要是通过减少端绕组。它通常与分段定子相关联,以便简化电机的结构,如机电致动器(EMA)。这种技术可能导致制造故障的存在,例如模块定子的各个部分之间存在额外的气隙。这促使用户考虑远离经典dq模型的PMSM复杂模型。因此,不希望的谐波,转矩波纹会干扰故障检测,如匝间故障检测算法。本文提出了基于模型和基于数据的侵入式控制与PMSM控制交互的方法,以便在控制和在线匝间故障检测中考虑到这些方面。在工业EMA原型上进行的各种实验测试验证了所提出解决方案的有效性。
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