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Comparison of the Fault Characteristics of IPM-Type and SPM-Type BLDC Motors Under Inter-Turn Fault Conditions Using Winding Function Theory

机译:使用绕组函数理论比较IPM型和SPM型BLDC电机在匝间故障条件下的故障特性

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摘要

In this paper, the characteristics of brushless dc (BLDC) motors were compared and analyzed according to the types and control methods under the inter-turn fault (ITF) condition. The shorted windings produced by the ITF were modeled by the winding function theory (WFT) based on the distributed constant circuit method. We also introduced the inductance calculated by the WFT to the voltage equation and analyzed the effect of the ITF using the characteristics of the input and output parameters. The increase rate of torque ripple, increase rate of input current, and the circulating current of the surface permanent-magnet (PM) and interior PM motors under healthy and ITF conditions were compared to determine which motor type is more efficient in preventing the ITF. We also analyzed the fault characteristics by applying the advanced angle control. In this paper, the analysis results are validated by the finite-element method and experiments.
机译:本文根据匝间故障(ITF)条件下的类型和控制方法,对无刷直流(BLDC)电动机的特性进行了比较和分析。通过基于分布恒定电路方法的绕组函数理论(WFT),对ITF产生的短路绕组进行建模。我们还将WFT计算得出的电感引入电压方程,并使用输入和输出参数的特性分析了ITF的影响。在健康和ITF条件下,比较了转矩脉动的增加速率,输入电流的增加速率以及表面永磁体(PM)和内部PM电动机的循环电流,以确定哪种类型的电动机更有效地防止了ITF。我们还通过应用高级角度控制来分析故障特征。本文通过有限元方法和实验对分析结果进行了验证。

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