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Dynamic analysis modeling for reliability increase of IPM-type BLDCM and energy saving under Dynamic Eccentricity—Stator Inter-turn Fault Coupling

机译:动态偏心率下IPM型BLDCM可靠性提高和节能的动态分析模型-定子匝间故障耦合

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In this paper, we propose a modeling technique for the classification of the fault frequency components according to the fault state. Further, the optimal rotor design for an increase in reliability of an Interior Permanent Magnet type Brushless DC Motor (IPM type BLDCM) and a rise of the energy saving. For these improvements, fault states such as Dynamic Eccentricity Fault (DEF), Stator Inter-turn Fault (SITF), and their Coupling Faults (CFs) are modeled and analyzed using a nonlinear Finite Element Method (FEM) and Fast Fourier Transform (FFT)
机译:在本文中,我们提出了一种根据故障状态对故障频率分量进行分类的建模技术。此外,为了提高内装永磁型无刷直流电动机(IPM型BLDCM)的可靠性并提高节能性,采用了最佳的转子设计。为了进行这些改进,使用非线性有限元方法(FEM)和快速傅立叶变换(FFT)对诸如动态偏心故障(DEF),定子匝间故障(SITF)及其耦合故障(CF)等故障状态进行建模和分析。 )

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