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Detection Technique for Stator Inter-Turn Faults in BLDC Motors Based on Third-Harmonic Components of Line Currents

机译:基于线电流三次谐波分量的无刷直流电动机定子匝间故障检测技术

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摘要

Among the methods for detecting stator inter-turn faults, the techniques that use the harmonic characteristics have been researched in induction motors with distributed windings. However, it is questionable that the techniques are available to apply in permanent magnet machines with concentrated windings and different control methods. First of all, this study analyzes the harmonic components of line current in a brushless dc (BLDC) motor, including the issues such as supply imbalance and inherent structural asymmetry, through the developed finite-element analysis and experiment under different operating conditions. As a result, the third harmonic in negative frequency (-3f) is suitable as a fault detector because it is free from those issues. Finally, in BLDC motors with 120° conduction in a six-step operation, the faults can be detected by determining whether or not the third harmonics exist at the incipient state.
机译:在检测定子匝间故障的方法中,已在具有分布绕组的感应电动机中研究了使用谐波特性的技术。然而,令人怀疑的是,该技术可用于具有集中绕组和不同控制方法的永磁电机中。首先,本研究通过开发的有限元分析和在不同工作条件下进行的实验,分析了无刷直流(BLDC)电动机中线电流的谐波分量,包括电源不平衡和固有的结构不对称性等问题。结果,负频率(-3f)的三次谐波适合作为故障检测器,因为它没有这些问题。最后,在六步运行中具有120°导通的BLDC电动机中,可以通过确定三次谐波是否处于初始状态来检测故障。

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