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Various parameters influence on field distribution in eccentric disc-type permanent magnet machine based on analytical method

机译:基于分析方法的偏心盘型永磁机现场分布的各种参数影响

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摘要

Eccentricity fault is a common fault in axial flux permanent magnet (PM) machines that can be destructive. The finite element method (FEM) has been already used for modelling eccentricity fault in disc type PM machine. Applying three-dimensional (3D) FEM to this motor is essential. However, 3D-FEM is a very time-consuming technique. Therefore, it is more appropriate to use an analytical technique to investigate the impact of different parameters upon the motor’s performance. The existing analytical methods usually represent a qualitative overview of the faulted machine. In this paper, a precise and quick analytic method is introduced, reflecting the impact of various important parameters, including rotor angle and fault position on the motor’s performance. This method enables the calculation of the induced voltage in a search coil. Comparing the results obtained from the proposed method and FEM, in both the no-load and full-load conditions, confirms the method’s accuracy. Finally, the impact of the search coil’s various parameters on dynamic and static eccentricity faults is examined. In addition, choosing the proper search coil pitch for eccentricity faults detection is discussed.
机译:偏心断层是轴向磁通永磁体(PM)机器的常见故障,可以破坏。有限元方法(FEM)已经用于在盘式PM机器中建模偏心故障。将三维(3D)有限元应用于该电机至关重要。然而,3D-FEM是一种非常耗时的技术。因此,使用分析技术来研究不同参数对电机性能的影响更适合。现有的分析方法通常代表故障机器的定性概述。在本文中,引入了一种精确和快速的分析方法,反映了各种重要参数的影响,包括转子角度和电机性能的故障位置。该方法使得能够计算搜索线圈中的感应电压。比较从拟议的方法和有限元件中获得的结果,在空载和全负载条件下,确认方法的准确性。最后,检查了搜索线圈的各种参数对动态和静态偏心故障的影响。另外,讨论了为偏心故障检测选择适当的搜索线圈间距。

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