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Detection of magnet demagnetization in five-phase surface-mounted permanent magnet generators

机译:检测五相表面安装式永磁发电机中的磁铁退磁

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摘要

Multiphase generators are attractive particularly for medium and high power applications, because this technology allows reducing the current per phase and consequently the requirements of the inverter switches. The interest in multiphase machines is motivated also by their greater number of degrees of freedom compared to three-phase machines. This characteristic is often used to improve the machine performance, to increase the power density or for diagnostic purposes. In particular, the condition monitoring of the status of the magnets in permanent magnet synchronous generators is critical and is receiving an increasing attention. In this paper, the demagnetization of the rotor magnet trailing edges due to abnormal stator currents in five-phase surface-mounted permanent magnet synchronous generators is analyzed. A new non-invasive on-line detection method, which emphasizes the emf variation due to the demagnetization, exploiting the additional degrees of freedom of a multiphase generator, is presented. The proposed approach is validated by means of finite element analysis and numerical simulations.
机译:多相发电机特别适合中功率和高功率应用,因为该技术可降低每相电流,从而降低逆变器开关的要求。与三相电机相比,它们具有更大的自由度,也激发了人们对多相电机的兴趣。此特性通常用于改善机器性能,增加功率密度或用于诊断目的。特别地,永磁同步发电机中磁体状态的状态监测至关重要,并且受到越来越多的关注。本文分析了五相表面安装式永磁同步发电机中由于定子电流异常而引起的转子磁铁后缘的消磁。提出了一种新的非侵入式在线检测方法,该方法强调了由于退磁而产生的电动势变化,并利用了多相发电机的额外自由度。通过有限元分析和数值模拟验证了该方法的有效性。

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